Selective Reactivation of Genes on the Inactive X Chromosome

ABSTRACT

Methods and compositions for selectively reactivating genes on the inactive X chromosome (Xi) in a locus-specific manner, e.g., genes associated with X-linked diseases, e.g., Rett Syndrome, Factor VIII or IX deficiency, Fragile X Syndrome, Duchenne muscular dystrophy, and PNH, in heterozygous females.

CLAIM OF PRIORITY

This application claims the benefit of U.S. Patent Application Ser. No. 61/680,616, filed on Aug. 7, 2012, the entire contents of which are hereby incorporated by reference.

FEDERALLY SPONSORED RESEARCH OR DEVELOPMENT

This invention was made with Government support under Grant No. RO1-GM090278 awarded by the National Institutes of Health. The Government has certain rights in the invention.

TECHNICAL FIELD

This invention relates to methods and compositions for selectively reactivating genes on the inactive X chromosome (Xi), e.g., genes associated with X-linked diseases, e.g., Rett Syndrome, Factor VIII or IX deficiency, Fragile X Syndrome, Duchenne muscular dystrophy, and PNH, in heterozygous females carrying a mutated allele, in addition to a functional wildtype or hypomorphic allele.

BACKGROUND

X chromosome inactivation (XCI) achieves dosage balance in mammals by repressing one of two X chromosomes in females. X-linked diseases occur in females when a defective gene is present on the active X chromosome (Xa). In some cases, a normal, wild type copy of the gene is present on the inactive X chromosome (Xi), and the severity of the disease may depend on the prevalence (skewing) of inactivation of the X chromosome carrying the wild type gene. Reactivating the entire Xi is undesirable as cancers could arise as a result of X-chromosome gene overdosing (Yildirim et al., 2013, Cell 152: 727-742). Locus-specific reactivation of the non-disease silent allele on the Xi would be therapeutic in many cases of X-linked disease, such as Rett Syndrome.

SUMMARY

At least in part, the present invention is based on the discovery that, during XCI, the long noncoding Xist RNA and Polycomb proteins spread along the inactive X (Xi) to initiate chromosome-wide silencing. Although inactivation is known to commence at the X-inactivation center (Xic), how it propagates remains unknown. The present disclosure is based on an examination allele-specific binding of Polycomb repressive complex 2 (PRC2) and chromatin composition during XCI, which was used to generate a chromosome-wide profile of Xi and Xa (active X) at nucleosome-resolution. As described herein, initially, Polycomb proteins are localized to ˜150 strong sites along the X and concentrated predominantly within bivalent domains coinciding with CpG islands (“canonical sites”). As XCI proceeds, ˜4000 non-canonical sites are recruited, most of which are intergenic, non-bivalent, and lack CpG islands. Non-canonical sites cluster around the ˜150 strong sites, and their H3K27me3 levels reflect a graded concentration originating from strong sites. This suggests that PRC2 and H3K27 methylation spread along a gradient unique to XCI. Thus, XCI is governed by a hierarchy of defined Polycomb stations that spread H3K27 methylation in cis.

A vast majority of the strong and moderate sites demonstrate transcription of at least one RNA, many of which are likely to be noncoding. Some overlap the previously described PRC2 transcriptome (Zhao et al., 2010, Molecular Cell; WO 2012/065143; and PCT/US2011/065939), but a large number does not.

Thus, in one aspect the invention provides methods for activating an inactive X-linked allele in a cell of a female heterozygous subject. The methods include administering to the cell an inhibitory oligonucleotide targeting one or more of a strong or moderate PRC2 or EZH2 or SUZ12 binding site as listed in Tables A, IVA-C or XIII-XV; and/or one or more of the transcripts associated with the PRC2 sites, as listed in Tables VI-IX, XVI-XVIII. In some embodiments, both an inhibitory oligonucleotide targeting a strong or moderate PRC2 or EZH2 or SUZ12 binding site, and an inhibitory oligonucleotide targeting a transcript associated with the same PRC2 site are administered.

In another aspect, the invention provides methods for activating an inactive X-linked allele in a cell, preferably a cell of a female heterozygous subject. The methods include administering to the cell one or more of:

(a) an inhibitory oligonucleotide targeting a strong or moderate PRC2 binding site (e.g., EZH2 or SUZ12 binding site, preferably a strong binding site) as listed in Tables A, IVA-C or XIII-XV, i.e., an oligo that is complementary or identical to a region within a strong or moderate PRC2 site, and/or

(b) an inhibitory oligonucleotide targeting (i.e., complementary to) a polycomb-associated RNA (pa-RNA) associated with the X-linked allele, e.g., a paRNA as set forth in Tables VI-IX or XVI-XVIII.

Although the end result is an activation or increase in gene expression, the oligonucleotides described herein are referred to as “inhibitory” because they inhibit the PRC2-mediated gene silencing, either by binding to either strand of the genomic DNA where the PRC2 complex binds (i.e., a strong or moderate site as described herein) and, without wishing to be bound by theory, inhibit binding of the PRC2 complex to that site, or because they bind to a paRNA as described herein and, without wishing to be bound by theory, inhibit the ability of the paRNA to silence the associated gene.

In some embodiments, the inactive X-linked allele is associated with an X-linked disorder, and the oligonucleotide is administered in a therapeutically effective amount.

In some embodiments, the cell is in a living subject.

In some embodiments, the inhibitory oligonucleotide is complementary or identical to at least 8 consecutive nucleotides of one or more of a strong or moderate PRC2 or EZH2 or SUZ12 binding site as listed in TABLES A, IV, XIII-XV; and/or one complementary to at least 8 consecutive nucleotides of one of the transcripts associated with the PRC2 sites, as listed in Tables VI-IX, XVI-XVIII.

In some embodiments, the oligonucleotide does not comprise three or more consecutive guanosine nucleotides. In some embodiments, the oligonucleotide does not comprise four or more consecutive guanosine nucleotides.

In some embodiments, the oligonucleotide is 8 to 30 nucleotides in length.

In some embodiments, at least one nucleotide of the oligonucleotide is a nucleotide analogue.

In some embodiments, at least one nucleotide of the oligonucleotide comprises a 2′ O-methyl.

In some embodiments, each nucleotide of the oligonucleotide comprises a 2′ O-methyl.

In some embodiments, the oligonucleotide comprises at least one ribonucleotide, at least one deoxyribonucleotide, or at least one bridged nucleotide. In some embodiments, the bridged nucleotide is a LNA nucleotide, a cEt nucleotide or a ENA modified nucleotide.

In some embodiments, each nucleotide of the oligonucleotide is a LNA nucleotide.

In some embodiments, the nucleotides of the oligonucleotide comprise 2′-fluoro-deoxyribonucleotides.

In some embodiments, the nucleotides of the oligonucleotide comprise 2′-O-methyl nucleotides.

In some embodiments, the nucleotides of the oligonucleotide comprise ENA nucleotide analogues.

In some embodiments, the nucleotides of the oligonucleotide comprise LNA nucleotides.

In some embodiments, the nucleotides of the oligonucleotide comprise comprising phosphorothioate internucleotide linkages between at least two nucleotides.

In some embodiments, the nucleotides of the oligonucleotide comprise phosphorothioate as internucleotide linkages between all nucleotides.

In some embodiments, the oligonucleotide is a gapmer or a mixmer.

In some embodiments, the oligonucleotide increases expression of mecp2.

In another aspect, the invention provides inhibitory oligonucleotides that are complementary to at least 8 consecutive nucleotides of one or more of a strong or moderate PRC2/EZH2 or SUZ12 binding site as listed in TABLES A, IV, XII-XV; and/or one or more of the transcripts associated with the PRC2 sites, as listed in Tables VI-IX, XVI-XVIII.

In some embodiments, the oligonucleotide does not comprise three or more consecutive guanosine nucleotides.

In some embodiments, the oligonucleotide does not comprise four or more consecutive guanosine nucleotides.

In some embodiments, the oligonucleotide is 8 to 30 nucleotides in length.

In some embodiments, at least one nucleotide of the oligonucleotide is a nucleotide analogue.

In some embodiments, at least one nucleotide of the oligonucleotide comprises a 2′ O-methyl.

In some embodiments, each nucleotide of the oligonucleotide comprises a 2′ O-methyl.

In some embodiments, the oligonucleotide comprises at least one ribonucleotide, at least one deoxyribonucleotide, or at least one bridged nucleotide.

In some embodiments, the bridged nucleotide is a LNA nucleotide, a cEt nucleotide or a ENA modified nucleotide.

In some embodiments, each nucleotide of the oligonucleotide is a LNA nucleotide.

In some embodiments, the nucleotides of the oligonucleotide comprise 2′-fluoro-deoxyribonucleotides.

In some embodiments, the nucleotides of the oligonucleotide comprise 2′-O-methyl nucleotides.

In some embodiments, the nucleotides of the oligonucleotide comprise ENA nucleotide analogues.

In some embodiments, the nucleotides of the oligonucleotide comprise LNA nucleotides.

In some embodiments, the nucleotides of the oligonucleotide comprise comprising phosphorothioate internucleotide linkages between at least two nucleotides.

In some embodiments, the nucleotides of the oligonucleotide comprise phosphorothioate internucleotide linkages between all nucleotides.

In some embodiments, the oligonucleotides are gapmers or mixmers.

In some embodiments, the oligonucleotide increases expression of mecp2.

Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. Methods and materials are described herein for use in the present invention; other, suitable methods and materials known in the art can also be used. The materials, methods, and examples are illustrative only and not intended to be limiting. All publications, patent applications, patents, sequences, database entries, and other references mentioned herein are incorporated by reference in their entirety. In case of conflict, the present specification, including definitions, will control.

Other features and advantages of the invention will be apparent from the following detailed description and figures, and from the claims.

REFERENCE TO SEQUENCES SUBMITTED ON A COMPACT DISC

This application includes a compact disc containing a sequence listing. The sequence listing is identified on the compact disc as follows.

Disc File Name Date of Creation size (bytes) 29539_0067WO1_1 29539_0067WO1_ST25.txt Aug. 7, 2013 606,912 KB

DESCRIPTION OF DRAWINGS

FIG. 1: Allelic Chromatin Profiles of Xa and Xi.

(A) Metagene analysis for chromatin epitopes on Chr13 and ChrX at indicated timepoints. Coverages were averaged over all genes (843 for Chr13, 1007 for ChrX) and scaled from TSS to 3′ end, E. Profiles extend 3 kb upstream of TSS and 3 kb downstream of E. Densities were normalized to the average gene coverage over the chromosome.

(B,C) Pearson correlations for pairwise comparisons between epitopes were compared to a permutation-based random model and resulting Z-scores plotted in heatmaps. (B) plots MEF results. (C) plots ES d0 and d7 results. Numerical Z-scores are color-coded and scaled identically for all heatmaps. Yellow-red patches, significant positive correlation; blue patches, significant negative correlation. A white diagonal line separates Cast and 129 results.

FIG. 2: Many Strong EZH2 Sites are Defined Bivalent Domains.

(A) Characteristics of constant, acquired, and lost strong EZH2 sites on d0 and d7. The portion of sites lying within CpG islands is indicated by stripes.

(B) Changes in peak widths, densities (coverage per bp) for EZH2 and H3K27me3 between d0 and d7. Medians (turquoise, Chr13; orange, ChrX), 25-75 percentile (box) and 10-90 percentile (error bars) are shown.

(C) Allelic skewing of strong EZH2 sites. Numbers of sites skewing to Cast (blue) or 129 (red) are shown. Those with significant skewing (p<0.05, norm. approx. of binomial) are shown in darker blue and red. Grey bars, non-polymorphic sites (n/d, not determined).

(D) Summed coverage of EZH2 and H3K27me3 at strong and moderate sites as a percentage of total chromosomal coverage on d0 and d7 (left) and as absolute fold-increase (d7/d0, right).

FIG. 3: Moderate EZH2 Sites are Non-Canonical PRC2 Targets.

(A) Characteristics of moderate EZH2 sites on d0 and d7. The portion of sites overlapping CpG islands is indicated by stripes.

(B) Allelic skewing of moderate EZH2 sites. Numbers of sites skewing to Cast (blue) or 129 (red) are shown. Those with significant skewing (p<0.05, norm. approx. of binomial) are shown in darker blue and red. Grey bars, non-polymorphic sites (n/d. not determined).

(C) Changes in EZH2 and H3K27me3 densities between d0 and d7. Medians (turquoise, Chr13; orange, ChrX), 25-75 percentile (box) and 10-90 percentile (error bars) are shown.

(D) Metasite analysis for strong and moderate sites at indicated timepoints. Coverages were averaged over all strong (ChrX: 56, 147, 50 sites; Chr13: 79, 81, 83 sites for d0, d7 and MEFs) and moderate sites (ChrX: 1618, 4077, 1211 sites; chr13: 1241, 1041, 758 sites for d0, d7 and MEFs) and scaled from start to end. Profiles extend ±20 kb into flanks. Densities were normalized to the average site coverage over the chromosome.

FIG. 4: Relationship of Repetitive Elements to EZH2 Sites.

(A) Repeat classes enriched or depleted in strong sites, ±3 kb flanking strong sites and moderate sites are plotted by their level of enrichment (positive log 2 odds ratio) or depletion (negative). Different timepoints and chromosomes, as marked. Bubble sizes indicate the fraction of sites (Scale: 0.05, 0.2, 0.5, 1.0) containing a given repeat class (if enriched) or lacking it (if depleted). For example, LINE1 sequences are depleted across the board in most sites, hence their bubbles are large. Only statistically significant (Z>2.5) enrichment or depletion is shown (bubble sizes smaller than 0.05 indicate insignificance). The full data are listed in Table II for further reference.

(B-D) Log 2 odds ratios for significant (Z>2.5) enrichment and depletion of specific repeat types at (B) strong sites, (C) flanking (+/−3 kb) strong sites and (D) moderate sites. The full data are listed in Table III for further reference.

FIG. 5: Developmental Profile of the Slc16a2-Rnf12 Region.

(A) ES d0 and d7 profiles for Slc16a2-Rnf2 region.

(B) Three models for spreading of EZH2.

FIG. 6: Spread of H3K27me3 from EZH2 sites occurs in a distance-dependent manner.

(A) EZH2 and H3K27me3 densities from d0 and d7 were binned over Chr13 and ChrX positions to obtain correlation coefficients and Z scores from a permutation-based random model. Pearson R coefficients are indicated for the correlation of strong/moderate EZH2 sites (orange values) and H3K27me3/moderate EZH2 sites (black values). A purple triangle marks the location of the Xic.

(B,C) Smoothened trendlines of EZH2 (B) or H3K27me3 (C) densities at a given nucleosome-sized window of x-distance from the nearest strong site, on indicated days and chromosomes. Densities are plotted over a sliding 1 kb window with steps of 200 bp.

FIG. 7: A Hierarchy of EZH2 Sites, with Limited EZH2 Translocation and Long-Range H3K27Me3 Gradient.

(A) Smoothened trendlines of EZH2 densities at a moderate (mod) site at given distances (x-axis) from the nearest strong site, on indicated days and chromosomes.

(B) Smoothened trendlines of H3K27me3 densities at a moderate (mod) site at given distances (x-axis) from the nearest strong site, on indicated days and chromosomes. Color-coded triangles denote distance-at-half-maximum for each chromosomal timepoint.

(C) Depiction of the number of moderate (mod) sites at given distances from the nearest strong site on d0 and d7 for Chr13 and ChrX. Scale, bubble sizes represent fractions of 0.2, 0.05 and 0.02 of all mod sites. Each graphed bubble is summed over 40 kb bins. Pearson correlation coefficients (R) and Z scores (Fisher transformed) shown.

(D) Model and summary.

FIG. 8: X Chromosome State and Allelic Ratio in Differentiating ESCs and MEFs.

(A) Percentage of EZH2 and H3K27me3 immunofluorescence stained differentiating ES cells (d4, d7, d10 example images next to bar chart), Xist-RNA FISH and X chromosome paint in MEFs, demonstrating 1:1 state of Xi:Xa.

(B) Relative abundance of input DNA aligning to specific chromosomes normalized solely by chromosome length in d0, d7 and MEFs, demonstrating expected relative abundance near 1 for all samples (not accounting for mapability). Chromosomes 13 and X highlighted by MEF labels (0.98 and 0.84, respectively).

(C) Distribution of input coverage densities over 1 kb in d0, d7 and MEFs in composite (comp), cast and 129 tracks over chr13 (black) and chrX (red), demonstrating lack of right-ward shift expected in case of aneuploidy.

FIG. 9: Allele-Specific ChIP-Seq at Imprinted, Biallelic and X-Linked Loci.

Select ChIP-seq profiles for POL-II-S5P, H3K4me3, H3K27me3, and EZH2 epitopes in MEFs were mapped to Mus castaneus (Cast) or 129 alleles. Comp, composite track (Cast+129+neutral). While composite tracks indicate total epitope abundance, enrichment in the allele-specific tracks is a function of both epitope abundance and SNP density. Input-normalized coverage values are indicated on the y-axis and scaled identically between alleles.

FIG. 10: Genes that Escape XCI.

(A) Classification of Chr13 and ChrX genes according to H3K4me3 status in d0, d7 and MEF, n/d, not determined due to lack of allele-specific polymorphisms. Peaks within 3 kb of an annotated TSS were scored for their allelic skew and significance (p<0.05, norm. approx. of binomial).

(B) Genes that escape XCI are shown with aliases, ChrX coordinates, and allelic skew values ranging 100% Cast to 100% 129 for H3K4me3 ChIP DNA. Composite values (comp) indicate total H3K4me3 coverage. X-linked genes marked with H3K4me3 in MEFs were classified as escapee candidates if allelic skew was not significant (p >0.05, binomial test) and/or had a maximal H3K4me3 coverage of >3000 over a given 1 kb window on the 129 allele. Escapee gene candidates predicted by RNA-seq (Yang et al., 2010) are also included in the table for comparison: 8 genes were identified in both studies (green), 4 specific to Yang et al. (2010)(yellow), and 3 specific to this study (blue).

(C) Allelic (Cast in blue, 129 in red) chromatin states of escapee gene candidates (in MEFs). Peak coverage of active mark H3K4me3 is shown on top, repressive mark H3K27me3 on the bottom (y-axis reversed to improve visualization).

FIG. 11: Comparison of Strong EZH2 Sites.

(A) Distribution (as probability density function (pdf) on y-axis) of maximal EZH2 density (per 1 kb) on strong (red) and moderate (black) EZH2 sites on Chr13 and ChrX in d0, d7 and MEF cells. Two dotted threshold lines indicate the density cutoff for moderate (left) and strong EZH2 sites (right), thick lines indicate density of 1 kb windows that were above these cutoffs in moderate (black) and strong (red) EZH2 sites. Significance threshold (p<10⁻⁵) for strong EZH2 sites was chosen such that the vast majority of moderate sites were excluded.

(B) Examples of previously identified (Ku, M et al. 2008) EZH2 targets in undifferentiated ES cells (d0) are called in our set of strong EZH2 sites (labeled in pink underneath composite EZH2 track in the middle): Bmp6, Irx2, Ntrk2 and Rasgrf2. All examples are bivalent (H3K4me3 tracks on top, H3K27me3 tracks on bottom) and contain CpG islands (labeled in black, last track).

FIG. 12: Loci for Validation of Strong and Moderate EZH2 Sites.

Screenshots of EZH2 and H3K27me3 tracks from loci chosen for validation of strong and moderate EZH2 sites on Chr13 and ChrX. Purple arrows and labels identify sites assayed by allele-specific qPCR in FIG. 13 and include a strong (constant, c-13) and moderate site (m-13) on Chr13, three strong (acquired, a-X2 and constant, c-X1, c-X2) and two moderate sites (m-X1, m-X2) on ChrX.

FIG. 13: Allele-Specific qPCR for Validation of Strong and Moderate EZH2 Sites.

Input and chromatin-immunoprecipitated (ChIP) DNA from EZH2, H3K27me3 and IgG ChIPs in d0, d7 and MEF cells (three biological replicates each) was amplified with primer sets (one universal, one allele-specific primer each) to the sites shown in FIG. 12. Error bars indicate standard error of Cast (blue) and 129 (red) means. A representative H3K4me3 ChIP sample was also included with error bars indicating standard error of three technical replicates. Asterisk indicates statistically significant difference (p<0.05, one-tailed Mann-Whitney U test) to the 129 signal at negative control locus in the gene body of escapee gene Jaridlc.

FIG. 14: Strong and Moderate EZH2 Site at the Xic-Distant Site, Mamld1.

Screenshot of EZH2, H3K27me3, and H3K4me3 tracks in d0 and d7 cells at Mamid1, approximately 30 Mb from the Xic. As in FIG. 5, strong (constant and acquired) and moderate EZH2 sites are indicated underneath the composite (comp) EZH2 tracks, SNP (and Indel) density per 1 kb window above the epitope tracks.

FIGS. 15A-B: Targeting Mecp2-AS or PRC2 Binding Sites Reactivates Expression

Bar graphs showing the results of with the untreated control set to a value of 1.0 and all others normalized to this value. LNA concentrations shown after each oligo in “nM”. All values normalized to Gapdh control. Then the level of expression in untreated samples (Xi control, Xi ctrl) was set to a normalized value of 1.0. The results are shown at a single time point, 24 h post-LNA treatment. 15A, expression from the mus (Xi) chromosome; 15B, expression from the Castaneus X (active X), shown at the same scale as 15A.

DETAILED DESCRIPTION

XCI provides an excellent model by which to study Polycomb regulation and the role of long noncoding RNAs (lncRNA) in inducing facultative heterochromatin (Lyon, 1999; Wutz and Gribnau, 2007; Payer and Lee, 2008)(Lee, 2011). XCI is controlled by the X-inactivation center (Xic), an X-linked region that controls the counting of X chromosomes, the mutually exclusive choice of Xa and Xi, and the recruitment and propagation of silencing complexes. The 17-kb Xist RNA initiates the silencing step as it accumulates on the X (Brockdorff et al., 1992; Brown et al., 1992; Clemson et al., 1996). Although recent studies have shown that Xist RNA directly recruits Polycomb repressive complex 2 (PRC2) to the Xi (Zhao et al., 2008) and that loading of the Xist-PRC2 complex occurs first at a YY1-bound nucleation center located within the Xic (Jeon and Lee, 2011), how the silencing complexes spread throughout the X after this obligatory nucleation step remains a major unsolved problem. Because autosomes with ectopic Xic sequences are subject to long-range silencing (Wutz and Gribnau, 2007; Payer and Lee, 2008), it is thought that spreading elements cannot be unique to the X. One hypothesis suggests that repetitive elements of the LINE1 class facilitate spreading (Lyon, 2000). However, this hypothesis has been difficult to test, as linking repeats to locus-specific function has been complicated by their repetitive nature. Some studies have provided correlative evidence (Bailey et al., 2000; Wang et al., 2006; Chow et al., 2010), whereas others find that species lacking active LINE1s nonetheless possess XCI (Cantrell et al., 2009). Other classes of repeats may be more enriched on the X (Chow et al., 2005). Matrix-associated proteins, such as SAF-A/hnRNP-U, have also been proposed to facilitate spreading (Helbig and Fackelmayer, 2003; Hasegawa et al., 2010; Pullirsch et al., 2010), but a direct link has also not been demonstrated.

In general, the identification of spreading elements has been thwarted by the lack of high-throughput approaches that distinguish Xi and Xa at sufficient resolution. Epigenomic studies have primarily focused on male cells (Bernstein et al., 2006; Boyer et al., 2006; Barski et al., 2007; Mikkelsen et al., 2007; Ku et al., 2008), though one recent ChIP-seq analysis with partial allele-specific coverage used female mouse embryonic stem (ES) cells but without addressing PRC2 binding. The reported 1.2-fold enrichment of H3K27me3 on Xi (Marks et al., 2009) is unexpectedly low and at odds with intense cytological H3K27me3 immunostaining (Plath et al., 2003; Silva et al., 2003)-likely caused by low-density polymorphisms between Xi and Xa. As a result, the quest for an Xi chromatin state map and spreading elements has remained unrealized.

In principle, silencing complexes could initially load at the Xic and spread serially from nucleosome to nucleosome. Alternatively, they could spread outwardly via ‘way stations’ located at defined sites along the X that would anchor and relay silencing complexes (Gartler and Riggs, 1983). To test these models, an allele-specific ChIP-seq strategy was devised that enabled the generation of chromosome-wide developmental profiles at unprecedented allelic resolution. Reported herein is a high-density Xi chromatin state map and identification of discrete Polycomb stations.

A vast majority of the strong and moderate sites demonstrates transcription of at least one RNA, many of which are likely to be noncoding. The PRC2 site-associated RNAs can be noncoding (long noncoding RNA, lncRNA) or occasionally part of a coding mRNA; for simplicity, we will discuss them together as polycomb-associated RNA (paRNA) henceforth. Some overlap the previously described PRC2 transcriptome (Zhao et al., 2010, Molecular Cell; WO 2012/087983 and WO 2012/065143). In ES cells and MEFs, 20-25% of putative mouse paRNAs have not been previously described; and 43-45% those within mouse moderate sites are new.

Each strong site governs on average ˜10 X-linked genes, and, without wishing to be bound by theory, it may be from these strong sites that local spreading of silencing occurs via moderate sites to encompass genes within the local domain. There is on average 20-30 moderate sites per strong site. PRC2 is first recruited to the strong sites. They are then passed on to moderate sites locally. Locally acting paRNAs within the moderate sites, in intergenic spaces, or within the genes themselves spread the repression to span the entire local gene cluster. Thus, paRNAs at strong and moderate sites are proposed to serve as cis-acting recruiting centers for PRC2. In some embodiments, the present methods include targeting paRNAs at strong and moderate sites to disrupt spreading or maintenance of inactivation at one or a few X-linked genes under the sphere of influence of the strong and moderate sites. In this manner, specific genes of interest on the inactive X could be reactivated to treat X-linked diseases, when the inactivated X chromosome bears a functional or hypomorphic copy of the gene.

paRNAs and paRNA Libraries

The present invention includes the individual paRNAs described herein, as well as libraries of paRNAs produced by methods described herein. In some embodiments, the paRNAs or libraries are in solution, or are lyophilized. In some embodiments, the libraries are bound to a substrate, e.g., wherein each member of the library is bound to an individually addressable member, e.g., an individual area on an array (e.g., a microarray), or a bead. The PRC2-interacting RNA transcript, although non-coding, may include a protein-coding sequence of bases if it is a distinct transcript that overlaps in position with a protein-coding reference gene (e.g. the gene whose expression is modulated in cis). In some embodiments, the paRNAs described herein differ from the endogenous molecule in one or more ways, e.g., they include more or fewer nucleotides, and/or include one or more of the modifications described herein for inhibitory nucleic acids, e.g., backbone or nucleoside modifications.

In one embodiment, a paRNA includes a nucleotide sequence that is at least about 85% or more homologous or identical to the entire length of a paRNA sequence shown herein, e.g., in any of Tables 1-4, or a fragment comprising at least 20 nt thereof (e.g., at least 25, 30, 35, 40, 50, 60, 70, 80, 90, or 100 nt thereof, e.g., at least 5%, 10%, 15%, 20%, 25%, 30%, 35%, 40%, 50% or more of the full length paRNA). In some embodiments, the nucleotide sequence is at least about 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, 99% or 100% homologous or identical to a paRNA sequence shown herein. In some embodiments, the nucleotide sequence is at least about 85%, e.g., is at least about 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, 99% or 100% homologous or identical to a paRNA sequence described herein, in a fragment thereof or a region that is much more conserved, such as Repeat A, but has lower sequence identity outside that region.

Mouse-to-human LiftOver analysis and analysis in the UCSC genome browser of syntenic positions indicate the existence of similar transcripts in the human genome. This process and LiftOver chains are generally described in Kent et al., Proc. Nat'l Acad. Sci., 100(20) 11484-11489 (2003). Similar PRC2-interacting transcripts are believed to occur in the human system given the geographic and sequence similarities between the mouse and human transcripts. The data suggest that many if not all of the mouse PRC2-transcripts have direct counterparts in the human epigenome. Such direct counterparts in other species are termed “orthologous” herein. Empirically identified human paRNAs associated with the X chromosome, and strong and moderate binding sites in the X Chromosome, are described herein (see Example 10).

PaRNAs may be functionally conserved without being highly conserved at the level of overall nucleotide identity. For example, mouse Xist shows only 76% overall nucleotide identity with human XIST using sliding 21-bp windows, or an overall sequence identity of only 60%. However, within specific functional domains, such as Repeat A, the degree of conservation can be >70% between different mammalian species. The crucial motif in Repeat A is the secondary structures formed by the repeat. A paRNA interacting with PRC2 may therefore be similarly low in overall conservation but still have conservation in secondary structure within specific domains of the RNA, and thereby demonstrate functional conservation with respect to recruitment of PRC2.

Calculations of homology or sequence identity between sequences (the terms are used interchangeably herein) are performed as follows.

To determine the percent identity of two nucleic acid sequences, the sequences are aligned for optimal comparison purposes (e.g., gaps can be introduced in one or both of a first and a second amino acid or nucleic acid sequence for optimal alignment and non-homologous sequences can be disregarded for comparison purposes). The length of a reference sequence aligned for comparison purposes is at least 80% of the length of the reference sequence, and in some embodiments is at least 90% or 1000/%. The nucleotides at corresponding amino acid positions or nucleotide positions are then compared. When a position in the first sequence is occupied by the same nucleotide as the corresponding position in the second sequence, then the molecules are identical at that position (as used herein nucleic acid “identity” is equivalent to nucleic acid “homology”). The percent identity between the two sequences is a function of the number of identical positions shared by the sequences, taking into account the number of gaps, and the length of each gap, which need to be introduced for optimal alignment of the two sequences.

For purposes of the present invention, the comparison of sequences and determination of percent identity between two sequences can be accomplished using a Blossum 62 scoring matrix with a gap penalty of 12, a gap extend penalty of 4, and a frameshift gap penalty of 5. There are several potential uses for the paRNAs described herein in the expanded PRC2 transcriptome: The RNAs themselves, or antagomirs and small molecules designed against them, can be utilized to modulate expression (either up or down) of Polycomb target genes. In addition, the paRNAs can be used to design and/or test inhibitory nucleic acids as described herein.

In various related aspects, including with respect to the targeting of paRNAs by LNA molecule, paRNAs can include endogenous cellular RNAs that are greater than 60 nt in length, e.g., greater than 100 nt, e.g., greater than 200 nt, have no positive-strand open reading frames greater than 100 amino acids in length, are identified as paRNAs by experimental evidence, and are distinct from known (smaller) functional-RNA classes (including but not limited to ribosomal, transfer, and small nuclear/nucleolar RNAs, siRNA, piRNA, and miRNA). See, e.g., Lipovich et al., “MacroRNA underdogs in a microRNA world: Evolutionary, regulatory, and biomedical significance of mammalian long non-protein-coding RNA” Biochimica et Biophysica Acta (2010) doi:10.1016/j.bbagrm.2010.10.001; Ponting et al., Cell 136(4):629-641 (2009), Jia et al., RNA 16 (8) (2010) 1478-1487, Dinger et al., Nucleic Acids Res. 37 1685 (2009) D122-D126 (database issue); and references cited therein. paRNAs can include RNAs referred to as long RNA, large RNA, macro RNA, intergenic RNA, and NonCoding Transcripts. The methods described herein can be used to target nuclear-localized paRNAs. Known classes of paRNAs include large intergenic non-coding RNAs (lincRNAs, see, e.g., Guttman et al., Nature. 2009 Mar. 12; 458(7235):223-7. Epub 2009 Feb. 1, which describes over a thousand exemplary highly conserved large non-coding RNAs in mammals; and Khalil et al., PNAS 106(28)11675-11680 (2009)): promoter associated short RNAs (PASRs; see, e.g., Seila et al., Science. 2008 Dec. 19; 322(5909):1849-51. Epub 2008 Dec. 4; Kanhere et al., Molecular Cell 38, 675-688, (2010)); endogenous antisense RNAs (see, e.g., Numata et al., BMC Genomics. 10:392 (2009); Okada et al., Hum Mol Genet. 17(11):1631-40 (2008); Numata et al., Gene 392(1-2):134-141 (2007); and Røsok and Sioud, Nat Biotechnol. 22(1): 104-8 (2004)); and RNAs that bind chromatin modifiers such as PRC2 and LSD1 (see, e.g., Tsai et al., Science. 2010 Aug. 6; 329(5992):689-93. Epub 2010 Jul. 8; and Zhao et al., Science. 2008 Oct. 31; 322(5902):750-6).

Exemplary paRNAs include the lncRNAs XIST, TSIX, MALAT1, RNCR2, and HOTAIR. The sequences for more than 17,000 long human ncRNAs can be found in the NCode™ Long ncRNA Database on the Invitrogen website. Additional long ncRNAs can be identified using, e.g., manual published literature, Functional Annotation of Mouse (FANTOM3) project, Human Full-length cDNA Annotation Invitational (H-Invitational) project, antisense ncRNAs from cDNA and EST database for mouse and human using a computation pipeline (Zhang et al., Nucl. Acids Res. 35 (suppl 1): D156-D161 (2006); Engstrom et al., PLoS Genet. 2:e47 (2006)), human snoRNAs and scaRNAs derived from snoRNA-LBME-db, RNAz (Washietl et al. 2005), Noncoding RNA Search (Torarinsson, et al. 2006), and EvoFold (Pedersen et al. 2006).

Disorders Associated with X-Inactivation

The present disclosure provides therapeutics for X-linked diseases formulated by designing inhibitory nucleic acids, e.g., oligonucleotides that bind to the strong or moderate PRC2 binding sites as described herein (on either strand), or oligonucleotides that are complementary to and thus bind to the transcripts that cross the PRC2 sites (paRNAs) described herein, to disrupt silencing of genes controlled by the PRC2 sites (e.g., all of the genes within a cluster), or to disrupt silencing of one specific gene. This methodology is useful in X-linked disorders, e.g., in heterozygous women who retain a wildtype copy of a gene on the Xi (See, e.g., Lyon, Acta Paediatr Suppl. 2002; 91(439):107-12; Carrell and Willard, Nature. 434(7031):400-4 (2005); den Veyver, Semin Reprod Med. 19(2):183-91 (2001)). Again, without wishing to be bound by theory, administration of an inhibitory nucleic acid (e.g., oligonucleotide) targeting a strong or moderate binding site is expected to prevent PRC2 recruitment to a specific X-linked gene cluster or to a specific gene on the inactive X, thereby reactivating the “good” or hypomorphic copy of the X-linked gene. As a result of X-inactivation, heterozygous females are mosaic for X-linked gene expression; some cells express genes from the maternal X and other cells express genes from the paternal X. The relative ratio of these two cell populations in a given female is frequently referred to as the “X-inactivation pattern.” One cell population may be at a selective growth disadvantage, resulting in clonal outgrowth of cells with one or the other parental X chromosome active; this can cause significant deviation or skewing from an expected mean X-inactivation pattern (i.e., 50:50). See, e.g., Plenge et al., Am. J. Hum. Genet. 71:168-173 (2002) and references cited therein.

The present methods can be used to treat disorders associated with X-inactivation, which includes those listed in Table A.

TABLE A Disorder OMIM # Locus Gene K562 Suz12* K562 Ezh2** GM12878 Ezh2*** Dent's 300009 Xp11.22 CLCN5 seg_203 seg_204 seg_205 seg_206 seg_224 seg_225 seg_226 seg_96 seg_97 seg_98 disease 1 seg_207 seg_208 seg_209 seg_210 seg_227 seg_228 seg_229 seg_99 seg_100 seg_211 seg_212 seg_213 seg_214 seg_230 seg_232 seg_234 seg_101 seg_102 seg_215 seg_216 seg_217 seg_218 seg_235 seg_236 seg_237 seg_103 seg_104 seg_219 seg_220 seg_221 seg_222 seg_238 seg_239 seg_240 seg_105 seg_93 seg_223 seg_224 seg_225 seg_226 seg_241 seg_242 seg_243 seg_95 seg_227 seg_228 seg_229 seg_230 seg_245 seg_246 seg_247 seg_231 seg_232 seg_233 seg_234 seg_248 seg_249 seg_250 seg_235 seg_236 seg_237 seg_238 seg_251 seg_252 seg_253 seg_239 seg_240 seg_242 seg_243 seg_254 seg_255 seg_256 seg_244 seg_245 seg_246 seg_247 seg_257 seg_258 seg_259 seg_249 seg_250 seg_251 seg_252 seg_260 seg_262 seg_263 seg_253 seg_254 seg_256 seg_257 seg_265 seg_266 seg_267 seg_258 seg_259 seg_260 seg_261 seg_268 seg_269 seg_270 seg_262 seg_263 seg_264 seg_265 seg_271 seg_272 seg_273 seg_266 seg_267 seg_268 seg_269 seg_274 seg_275 seg_276 seg_270 seg_271 seg_202 seg_241 seg_277 seg_275 seg_231 seg_248 seg_255 seg_233 seg_244 seg_261 seg_264 Testicular 300068 Xq11-q12 AR seg_296 seg_297 seg_298 seg_300 seg_285 seg_286 seg_287 seg_108 seg_109 feminization seg_302 seg_305 seg_306 seg_307 seg_290 seg_291 seg_292 seg_110 seg_111 syndrome seg_308 seg_309 seg_310 seg_311 seg_294 seg_295 seg_296 seg_112 seg_113 seg_313 seg_314 seg_315 seg_316 seg_297 seg_298 seg_299 seg_114 seg_115 seg_317 seg_318 seg_319 seg_320 seg_302 seg_303 seg_304 seg_116 seg_117 seg_321 seg_322 seg_323 seg_324 seg_305 seg_306 seg_307 seg_118 seg_119 seg_326 seg_328 seg_329 seg_330 seg_308 seg_309 seg_311 seg_121 seg_122 seg_331 seg_332 seg_334 seg_335 seg_312 seg_313 seg_288 seg_124 seg_125 seg_337 seg_338 seg_339 seg_340 seg_289 seg_293 seg_300 seg_120 seg_123 seg_341 seg_342 seg_344 seg_345 seg_301 seg_310 seg_295 seg_299 seg_301 seg_303 seg_304 seg_312 seg_325 seg_327 seg_333 seg_336 seg_343 Addison's 300100 Xq28 ABCD1 seg_564 seg_566 seg_567 seg_568 seg_504 seg_505 seg_506 seg_209 seg_210 disease seg_569 seg_571 seg_572 seg_574 seg_507 seg_508 seg_509 seg_211 seg_212 with seg_575 seg_576 seg_577 seg_578 seg_510 seg_511 seg_512 seg_213 seg_214 cerebral seg_579 seg_580 seg_581 seg_582 seg_514 seg_515 seg_516 seg_215 sclerosis seg_583 seg_584 seg_585 seg_586 seg_517 seg_518 seg_520 seg_587 seg_588 seg_589 seg_590 seg_521 seg_522 seg_523 seg_591 seg_592 seg_593 seg_594 seg_524 seg_525 seg_526 seg_595 seg_596 seg_597 seg_599 seg_527 seg_528 seg_529 seg_600 seg_601 seg_602 seg_603 seg_530 seg_531 seg_532 seg_604 seg_605 seg_606 seg_607 seg_533 seg_534 seg_535 seg_608 seg_609 seg_610 seg_611 seg_536 seg_538 seg_539 seg_612 seg_613 seg_615 seg_616 seg_540 seg_542 seg_543 seg_617 seg_618 seg_619 seg_620 seg_544 seg_545 seg_546 seg_622 seg_623 seg_624 seg_625 seg_547 seg_548 seg_549 seg_626 seg_627 seg_628 seg_629 seg_550 seg_551 seg_552 seg_630 seg_631 seg_632 seg_633 seg_553 seg_554 seg_555 seg_634 seg_635 seg_637 seg_638 seg_556 seg_558 seg_559 seg_639 seg_641 seg_642 seg_644 seg_561 seg_562 seg_563 seg_645 seg_646 seg_647 seg_648 seg_564 seg_565 seg_566 seg_649 seg_650 seg_651 seg_652 seg_567 seg_568 seg_570 seg_654 seg_655 seg_656 seg_657 seg_572 seg_573 seg_574 seg_658 seg_659 seg_660 seg_661 seg_575 seg_576 seg_577 seg_662 seg_663 seg_664 seg_665 seg_578 seg_513 seg_519 seg_666 seg_565 seg_570 seg_573 seg_537 seg_541 seg_557 seg_614 seg_621 seg_636 seg_640 seg_569 seg_571 seg_560 seg_643 seg_598 seg_653 Adrenal 300200 XP21.3-p21.2 DAX1 seg_157 seg_159 seg_160 seg_161 seg_198 seg_197 seg_67 seg_69 seg_71 hypoplasia seg_162 seg_163 seg_164 seg_158 seg_72 seg_73 seg_74 seg_75 seg_76 seg_77 seg_78 seg_68 seg_70 siderius X- 300263 Xp11.22 PHF8 seg_222 seg_223 seg_224 seg_225 seg_247 seg_248 seg_249 seg_101 seg_102 linked seg_226 seg_227 seg_228 seg_229 seg_250 seg_251 seg_252 seg_103 seg_104 mental seg_230 seg_231 seg_232 seg_233 seg_253 seg_254 seg_255 seg_105 seg_106 retardation seg_234 seg_235 seg_236 seg_237 seg_256 seg_257 seg_258 syndrome seg_238 seg_239 seg_240 seg_242 seg_259 seg_260 seg_262 seg_243 seg_244 seg_245 seg_246 seg_263 seg_265 seg_266 seg_247 seg_249 seg_250 seg_251 seg_267 seg_268 seg_269 seg_252 seg_253 seg_254 seg_256 seg_270 seg_271 seg_272 seg_257 seg_258 seg_259 seg_260 seg_275 seg_274 seg_275 seg_261 seg_262 seg_263 seg_264 seg_276 seg_277 seg_278 seg_265 seg_266 seg_267 seg_268 seg_279 seg_280 seg_281 seg_269 seg_270 seg_271 seg_272 seg_282 seg_283 seg_261 seg_273 seg_274 seg_275 seg_276 seg_264 seg_277 seg_278 seg_279 seg_280 seg_281 seg_282 seg_284 seg_241 seg_248 seg_255 seg_283 Agamma- 300300 Xq21.3-q22 BTK seg_376 seg_377 seg_378 seg_379 seg_323 seg_324 seg_326 seg_140 seg_141 globulinaemia, seg_381 seg_382 seg_385 seg_386 seg_327 seg_328 seg_329 seg_142 seg_143 Bruton type seg_388 seg_389 seg_391 seg_392 seg_331 seg_332 seg_333 seg_144 seg_145 seg_393 seg_394 seg_395 seg_396 seg_334 seg_336 seg_337 seg_146 seg_397 seg_398 seg_399 seg_400 seg_338 seg_339 seg_340 seg_401 seg_402 seg_403 seg_404 seg_341 seg_342 seg_343 seg_405 seg_380 seg_383 seg_387 seg_344 seg_345 seg_346 seg_390 seg_384 seg_347 seg_348 seg_321 seg_325 seg_330 seg_335 Choroidoretinal 300389 Xp21.1 RPGR seg_165 seg_166 seg_167 seg_168 seg_200 seg_201 seg_202 seg_80 seg_81 seg_82 degeneration seg_169 seg_170 seg_171 seg_172 seg_203 seg_204 seg_205 seg_83 seg_84 seg_85 seg_173 seg_174 seg_175 seg_176 seg_206 seg_207 seg_208 seg_86 seg_87 seg_88 seg_177 seg_178 seg_179 seg_181 seg_210 seg_211 seg_212 seg_89 seg_90 seg_91 seg_182 seg_183 seg_184 seg_185 seg_213 seg_214 seg_215 seg_186 seg_187 seg_188 seg_189 seg_216 seg_217 seg_218 seg_191 seg_192 seg_193 seg_195 seg_209 seg_196 seg_180 seg_190 seg_194 Choroidaemia 300390 Xq21.2 CHM seg_368 seg_369 seg_370 seg_371 seg_136 seg_137 seg_372 Albinism, 300500 Xp22.3 OA1 seg_50 seg_51 seg_52 seg_53 seg_54 seg_56 seg_57 seg_58 seg_9 seg_10 seg_11 ocular seg_55 seg_56 seg_57 seg_58 seg_59 seg_60 seg_61 seg_63 seg_12 seg_13 seg_14 seg_60 seg_61 seg_63 seg_64 seg_65 seg_64 seg_65 seg_66 seg_16 seg_l 7 seg_18 seg_66 seg_67 seg_68 seg_69 seg_70 seg_67 seg_68 seg_69 seg_19 seg_20 seg_21 seg_71 seg_73 seg_74 seg_75 seg_76 seg_70 seg_71 seg_72 seg_22 seg_23 seg_24 seg_77 seg_78 seg_79 seg_80 seg_81 seg_73 seg_74 seg_75 seg_25 seg_26 seg_27 seg_82 seg_83 seg_84 seg_85 seg_86 seg_76 seg_77 seg_78 seg_28 seg_29 seg_30 seg_87 seg_88 seg_89 seg_90 seg_91 seg_79 seg_80 seg_81 seg_31 seg_32 seg_33 seg_62 seg_72 seg_82 seg_83 seg_84 seg_34 seg_15 seg_85 seg_36 seg_87 seg_88 seg_89 seg_91 seg_92 seg_93 seg_95 seg_96 seg_97 seg_98 seg_99 seg_100 seg_101 seg_102 seg_103 seg_104 seg_106 seg_107 seg_108 seg_110 seg_59 seg_62 seg_90 seg_94 seg_105 seg_109 Dent's 300555 Xq25-q26 OCRL seg_474 seg_475 seg_477 seg_478 seg_420 seg_421 seg_422 seg_185 seg_186 disease 2 seg_479 seg_480 seg_481 seg_482 seg_423 seg_424 seg_425 seg_187 seg_188 seg_483 seg_484 seg_485 seg_486 seg_426 seg_427 seg_428 seg_189 seg_190 seg_487 seg_488 seg_489 seg_490 seg_429 seg_430 seg_431 seg_191 seg_192 seg_491 seg_492 seg_493 seg_494 seg_432 seg_433 seg_434 seg_183 seg_495 seg_496 seg_497 seg_498 seg_436 seg_438 seg_439 seg_499 seg_501 seg_502 seg_503 seg_440 seg_441 seg_442 seg_476 seg_500 seg_443 seg_435 seg_437 fragile X 300624 Xq27.3 FMR1 seg_561 seg_562 seg_563 seg_564 seg_503 seg_504 seg_505 seg_208 seg_209 syndrome seg_566 seg_567 seg_568 seg_569 seg_506 seg_507 seg_508 seg_210 seg_211 seg_571 seg_572 seg_574 seg_575 seg_509 seg_510 seg_511 seg_212 seg_576 seg_577 seg_578 seg_579 seg_512 seg_514 seg_515 seg_580 seg_581 seg_582 seg_583 seg_516 seg_517 seg_518 seg_584 seg_585 seg_586 seg_587 seg_520 seg_521 seg_522 seg_588 seg_589 seg_590 seg_591 seg_523 seg_524 seg_525 seg_592 seg_593 seg_594 seg_595 seg_526 seg_527 seg_528 seg_596 seg_597 seg_599 seg_560 seg_529 seg_530 seg_531 seg_565 seg_570 seg_573 seg_598 seg_532 seg_513 seg_519 Rett/Epileptic 300672 Xp22.13 CDKL5 seg_83 seg_84 seg_85 seg_86 seg_87 seg_96 seg_97 seg_98 seg_31 seg_32 seg_33 encephalopathy, seg_88 seg_89 seg_90 seg_91 seg_92 seg_99 seg_100 seg_101 seg_34 seg_35 seg_36 early infantile, seg_93 seg_94 seg_95 seg_96 seg_97 seg_102 seg_103 seg_104 seg_37 seg_38 seg_39 2 seg_98 seg_99 seg_100 seg_101 seg_106 seg_107 seg_108 seg_40 seg_41 seg_42 seg_102 seg_103 seg_104 seg_105 seg_110 seg_111 seg_112 seg_43 seg_44 seg_45 seg_106 seg_107 seg_108 seg_109 seg_113 seg_114 seg_115 seg_46 seg_47 seg_48 seg_111 seg_112 seg_113 seg_114 seg_117 seg_119 seg_120 seg_49 seg_50 seg_51 seg_115 seg_116 seg_117 seg_118 seg_121 seg_122 seg_123 seg_52 seg_53 seg_55 seg_119 seg_121 seg_122 seg_124 seg_124 seg_125 seg_126 seg_56 seg_57 seg_58 seg_125 seg_126 seg_127 seg_128 seg_127 seg_128 seg_130 seg_59 seg_61 seg_60 seg_129 seg_131 seg_132 seg_133 seg_131 seg_132 seg_133 seg_54 seg_134 seg_135 seg_136 seg_137 seg_134 seg_135 seg_136 seg_138 seg_139 seg_110 seg_123 seg_137 seg_138 seg_139 seg_130 seg_120 seg_140 seg_141 seg_142 seg_143 seg_144 seg_145 seg_146 seg_147 seg_148 seg_149 seg_150 seg_151 seg_152 seg_153 seg_156 seg_157 seg_158 seg_159 seg_160 seg_161 seg_162 seg_163 seg_164 seg_165 seg_166 seg_167 seg_168 seg_169 seg_171 seg_172 seg_173 seg_174 seg_175 seg_176 seg_177 seg_178 seg_179 seg_180 seg_181 seg_182 seg_183 seg_184 seg_94 seg_105 seg_109 seg_116 seg_118 seg_129 seg_154 seg_155 seg_170 Albinism- 300700 Xq26.3-q27.1 ADFN eg_434 seg_436 seg_437 seg_438 eg_375 seg_376 seg_377 eg_164 seg_165 deafness seg_440 seg_441 seg_442 seg_443 seg_378 seg_379 seg_380 seg_166 seg_167 syndrome seg_444 seg_445 seg_446 seg_447 seg_381 seg_382 seg_383 seg_168 seg_169 seg_448 seg_449 seg_450 seg_451 seg_384 seg_385 seg_386 seg_171 seg_172 seg_452 seg_453 seg_454 seg_455 seg_387 seg_388 seg_389 seg_173 seg_174 seg_456 seg_457 seg_458 seg_459 seg_390 seg_391 seg_392 seg_175 seg_176 seg_460 seg_461 seg_462 seg_464 seg_393 seg_394 seg_395 seg_177 seg_178 seg_465 seg_466 seg_435 seg_439 seg_396 seg_397 seg_398 seg_179 seg_180 seg_463 seg_433 seg_399 seg_400 seg_401 seg_181 seg_170 seg_402 seg_403 seg_404 seg_405 seg_406 seg_407 seg_409 seg_410 seg_411 seg_413 seg_414 seg_415 seg_408 seg_412 paroxysmal 300818 Xp22.2 PIGA seg_68 seg_89 seg_70 seg_71 seg_73 seg_77 seg_78 seg_79 seg_17 seg_18 seg_19 nocturnal seg_74 seg_75 seg_76 seg_77 seg_78 seg_80 seg_81 seg_82 seg_20 seg_21 seg_22 hemoglobinuria seg_79 seg_80 seg_81 seg_82 seg_83 seg_83 seg_84 seg_85 seg_23 seg_24 seg_25 seg_84 seg_85 seg_86 seg_87 seg_88 seg_86 seg_87 seg_88 seg_26 seg_27 seg_28 seg_89 seg_90 seg_91 seg_92 seg_93 seg_89 seg_91 seg_92 seg_29 seg_30 seg_31 seg_94 seg_95 seg_96 seg_97 seg_98 seg_93 seg_95 seg_96 seg_32 seg_33 seg_34 seg_99 seg_100 seg_101 seg_102 seg_97 seg_98 seg_99 seg_35 seg_36 seg_37 seg_103 seg_104 seg_105 seg_106 seg_100 seg_101 seg_102 seg_38 seg_39 seg_40 seg_107 seg_108 seg_109 seg_111 seg_103 seg_104 seg_106 seg_41 seg_42 seg_43 seg_112 seg_113 seg_114 seg_115 seg_107 seg_108 seg_110 seg_44 seg_45 seg_48 seg_116 seg_117 seg_118 seg_119 seg_111 seg_112 seg_113 seg_47 seg_48 seg_49 seg_121 seg_122 seg_124 seg_125 seg_114 seg_115 seg_117 seg_50 seg_51 seg_52 seg_126 seg_127 seg_128 seg_129 seg_119 seg_120 seg_121 seg_53 seg_55 seg_56 seg_72 seg_110 seg_123 seg_130 seg_122 seg_123 seg_124 seg_54 seg_120 seg_125 seg_126 seg_127 seg_128 seg_130 seg_131 seg_132 seg_133 seg_134 seg_135 seg_136 seg_137 seg_138 seg_139 seg_140 seg_141 seg_142 seg_143 seg_144 seg_145 seg_146 seg_147 seg_148 seg_149 seg_150 seg_151 seg_152 seg_153 seg_156 seg_157 seg_158 seg_159 seg_160 seg_161 seg_162 seg_163 seg_164 seg_165 seg_166 seg_167 seg_168 seg_169 seg_171 seg_172 seg_173 seg_174 seg_175 seg_176 seg_177 seg_178 seg_90 seg_94 seg_105 seg_109 seg_116 seg_118 seg_129 seg_154 seg_155 seg_170 Aldrich 301000 Xp11.23-p11.22 WAS seg_199 seg_201 seg_203 seg_204 seg_220 seg_221 seg_222 seg_96 seg_97 seg_98 syndrome seg_205 seg_206 seg_207 seg_208 seg_223 seg_224 seg_225 seg_99 seg_100 seg_209 seg_210 seg_211 seg_212 seg_226 seg_227 seg_228 seg_101 seg_102 seg_213 seg_214 seg_215 seg_216 seg_229 seg_230 seg_232 seg_103 seg_93 seg_217 seg_218 seg_219 seg_220 seg_234 seg_235 seg_236 seg_95 seg_221 seg_222 seg_223 seg_224 seg_237 seg_238 seg_239 seg_225 seg_226 seg_227 seg_228 seg_240 seg_241 seg_242 seg_229 seg_230 seg_231 seg_232 seg_243 seg_245 seg_246 seg_233 seg_234 seg_235 seg_236 seg_247 seg_248 seg_249 seg_237 seg_238 seg_239 seg_240 seg_250 seg_251 seg_252 seg_242 seg_243 seg_244 seg_245 seg_253 seg_254 seg_255 seg_246 seg_247 seg_249 seg_250 seg_256 seg_257 seg_258 seg_251 seg_252 seg_253 seg_254 seg_259 seg_260 seg_262 seg_256 seg_257 seg_258 seg_259 seg_263 seg_265 seg_266 seg_260 seg_261 seg_262 seg_263 seg_267 seg_268 seg_269 seg_264 seg_200 seg_202 seg_241 seg_270 seg_271 seg_231 seg_248 seg_255 seg_233 seg_244 seg_261 seg_264 Alport 301050 Xq22.3 COL4A5 seg_394 seg_395 seg_396 seg_397 seg_334 seg_336 seg_337 seg_146 seg_148 syndrome seg_398 seg_399 seg_400 seg_401 seg_338 seg_339 seg_340 seg_149 seg_150 seg_402 seg_403 seg_404 seg_405 seg_341 seg_342 seg_343 seg_152 seg_156 seg_406 seg_407 seg_408 seg_409 seg_344 seg_345 seg_346 seg_157 seg_158 seg_410 seg_411 seg_412 seg_413 seg_347 seg_348 seg_349 seg_159 seg_160 seg_414 seg_415 seg_417 seg_418 seg_350 seg_351 seg_352 seg_161 seg_162 seg_419 seg_420 seg_421 seg_423 seg_353 seg_355 seg_356 seg_163 seg_164 seg_425 seg_426 seg_427 seg_428 seg_357 seg_358 seg_362 seg_165 seg_166 seg_431 seg_432 seg_434 seg_436 seg_363 seg_364 seg_365 seg_167 seg_168 seg_437 seg_416 seg_422 seg_424 seg_366 seg_367 seg_368 seg_147 seg_153 seg_429 seg_430 seg_435 seg_433 seg_369 seg_370 seg_371 seg_154 seg_155 seg_372 seg_373 seg_374 seg_151 seg_375 seg_335 seg_354 seg_359 seg_360 seg_361 Anaemia, 301300 Xp11.21 ALAS2 seg_229 seg_230 seg_231 seg_232 seg_252 seg_253 seg_254 seg_101 seg_102 hereditary seg_233 seg_234 seg_235 seg_236 seg_255 seg_256 seg_257 seg_103 seg_104 hypochromic seg_237 seg_238 seg_239 seg_240 seg_258 seg_259 seg_260 seg_105 seg_106 seg_242 seg_243 seg_244 seg_245 seg_262 seg_263 seg_265 seg_246 seg_247 seg_249 seg_250 seg_266 seg_267 seg_268 seg_251 seg_252 seg_253 seg_254 seg_269 seg_270 seg_271 seg_256 seg_257 seg_258 seg_259 seg_272 seg_273 seg_274 seg_260 seg_261 seg_262 seg_263 seg_275 seg_276 seg_277 seg_264 seg_265 seg_266 seg_267 seg_278 seg_279 seg_280 seg_268 seg_269 seg_270 seg_271 seg_281 seg_282 seg_283 seg_272 seg_273 seg_274 seg_275 seg_261 seg_264 seg_276 seg_277 seg_278 seg_279 seg_280 seg_281 seg_282 seg_284 seg_241 seg_248 seg_255 seg_283 Anemia, 301310 Xq13.3 ABCB7 seg_326 seg_328 seg_329 seg_330 seg_295 seg_296 seg_297 seg_119 seg_121 sideroblastic, seg_331 seg_332 seg_334 seg_335 seg_298 seg_299 seg_302 seg_122 seg_124 with seg_337 seg_338 seg_335 seg_340 seg_303 seg_304 seg_305 seg_125 seg_126 ataxia seg_341 seg_342 seg_344 seg_345 seg_306 seg_307 seg_308 seg_127 seg_123 seg_346 seg_347 seg_348 seg_349 seg_309 seg_311 seg_312 seg_129 seg_130 seg_350 seg_351 seg_352 seg_353 seg_313 seg_314 seg_315 seg_131 seg_133 seg_354 seg_356 seg_358 seg_359 seg_316 seg_317 seg_318 seg_134 seg_120 seg_360 seg_361 seg_362 seg_363 seg_319 seg_300 seg_301 seg_123 seg_132 seg_325 seg_327 seg_333 seg_336 seg_310 seg_343 seg_355 seg_357 Fabry 301500 Xq22 GLA seg_376 seg_377 seg_378 seg_379 seg_323 seg_324 seg_326 seg_140 seg_141 disease seg_381 seg_382 seg_385 seg_386 seg_327 seg_328 seg_329 seg_142 seg_143 seg_388 seg_389 seg_391 seg_392 seg_331 seg_332 seg_333 seg_144 seg_145 seg_393 seg_394 seg_395 seg_396 seg_334 seg_336 seg_337 seg_146 seg_397 seg_398 seg_399 seg_400 seg_338 seg_339 seg_340 seg_401 seg_402 seg_403 seg_404 seg_341 seg_342 seg_343 seg_405 seg_380 seg_383 seg_387 seg_344 seg_345 seg_346 seg_390 seg_384 seg_347 seg_348 seg_321 seg_325 seg_330 seg_335 Spinal 301830 Xp11.23 UBA1 seg_197 seg_198 seg_199 seg_201 seg_220 seg_221 seg_222 seg_94 seg_96 seg_97 muscular seg_203 seg_204 seg_205 seg_206 seg_223 seg_224 seg_225 seg_98 seg_99 atrophy 2 seg_207 seg_208 seg_209 seg_210 seg_226 seg_227 seg_228 seg_100 seg_93 seg_211 seg_212 seg_213 seg_214 seg_229 seg_230 seg_232 seg_95 seg_215 seg_216 seg_217 seg_218 seg_234 seg_235 seg_236 seg_219 seg_220 seg_221 seg_222 seg_237 seg_238 seg_239 seg_223 seg_224 seg_225 seg_226 seg_240 seg_241 seg_242 seg_227 seg_228 seg_229 seg_230 seg_243 seg_245 seg_246 seg_231 seg_232 seg_233 seg_234 seg_247 seg_248 seg_249 seg_235 seg_236 seg_237 seg_238 seg_250 seg_251 seg_252 seg_239 seg_240 seg_242 seg_243 seg_253 seg_254 seg_255 seg_244 seg_200 seg_202 seg_241 seg_256 seg_257 seg_231 seg_233 seg_244 Cataract, 302200 Xp CCT seg_76 seg_77 seg_78 seg_79 seg_80 seg_88 seg_89 seg_91 seg_21 seg_22 seg_23 congenital seg_81 seg_82 seg_83 seg_84 seg_85 seg_92 seg_93 seg_95 seg_24 seg_25 seg_26 seg_86 seg_87 seg_88 seg_89 seg_90 seg_96 seg_97 seg_98 seg_27 seg_28 seg_29 seg_91 seg_92 seg_93 seg_94 seg_95 seg_99 seg_100 seg_101 seg_30 seg_31 seg_32 seg_96 seg_97 seg_98 seg_99 seg_100 seg_102 seg_103 seg_104 seg_33 seg_34 seg_35 seg_101 seg_102 seg_103 seg_104 seg_106 seg_107 seg_108 seg_36 seg_37 seg_38 seg_105 seg_106 seg_107 seg_108 seg_110 seg_111 seg_112 seg_39 seg_40 seg_41 seg_109 seg_111 seg_112 seg_113 seg_113 seg_114 seg_115 seg_42 seg_43 seg_44 seg_114 seg_115 seg_116 seg_117 seg_117 seg_113 seg_120 seg_45 seg_46 seg_47 seg_118 seg_119 seg_121 seg_122 seg_121 seg_122 seg_123 seg_48 seg_49 seg_50 seg_124 seg_125 seg_126 seg_127 seg_124 seg_125 seg_126 seg_51 seg_52 seg_53 seg_128 seg_129 seg_131 seg_132 seg_127 seg_128 seg_130 seg_55 seg_56 seg_57 seg_133 seg_134 seg_110 seg_123 seg_131 seg_132 seg_133 seg_58 seg_59 seg_54 seg_130 seg_120 seg_134 seg_135 seg_136 seg_137 seg_138 seg_139 seg_140 seg_141 seg_142 seg_143 seg_144 seg_145 seg_146 seg_147 seg_148 seg_149 seg_150 seg_151 seg_152 seg_155 seg_156 seg_157 seg_158 seg_159 seg_160 seg_161 seg_162 seg_163 seg_164 seg_165 seg_166 seg_167 seg_168 seg_169 seg_171 seg_172 seg_173 seg_174 seg_175 seg_176 seg_177 seg_178 seg_179 seg_180 seg_181 seg_182 seg_183 seg_184 seg_90 seg_94 seg_105 seg_109 seg_116 seg_118 seg_129 seg_154 seg_155 seg_170 Charcot- 302800 Xq13.1 GJB1 seg_313 seg_314 seg_315 seg_316 seg_287 seg_290 seg_291 seg_114 seg_115 Marie- seg_317 seg_318 seg_319 seg_320 seg_292 seg_294 seg_295 seg_116 seg_117 Tooth, seg_321 seg_322 seg_323 seg_324 seg_296 seg_297 seg_298 seg_118 seg_119 peroneal seg_326 seg_328 seg_329 seg_330 seg_299 seg_302 seg_303 seg_121 seg_122 seg_331 seg_332 seg_334 seg_335 seg_304 seg_305 seg_306 seg_124 seg_125 seg_337 seg_338 seg_339 seg_340 seg_307 seg_308 seg_309 seg_126 seg_127 seg_341 seg_342 seg_344 seg_345 seg_311 seg_312 seg_313 seg_120 seg_123 seg_346 seg_347 seg_348 seg_349 seg_314 seg_315 seg_316 seg_350 seg_351 seg_352 seg_353 seg_317 seg_318 seg_319 seg_354 seg_356 seg_312 seg_325 seg_288 seg_289 seg_293 seg_327 seg_333 seg_336 seg_343 seg_300 seg_301 seg_310 seg_355 seg_357 Spastic 303350 Xq28 L1CAM seg_564 seg_566 seg_567 seg_568 seg_504 seg_505 seg_506 seg_209 seg_210 paraplegia seg_569 seg_571 seg_572 seg_574 seg_507 seg_508 seg_509 seg_211 seg_212 seg_575 seg_576 seg_577 seg_578 seg_510 seg_511 seg_512 seg_213 seg_214 seg_579 seg_580 seg_581 seg_582 seg_514 seg_515 seg_516 seg_215 seg_583 seg_584 seg_585 seg_586 seg_517 seg_518 seg_520 seg_587 seg_588 seg_589 seg_590 seg_521 seg_522 seg_523 seg_591 seg_592 seg_593 seg_594 seg_524 seg_525 seg_526 seg_595 seg_596 seg_597 seg_599 seg_527 seg_528 seg_529 seg_600 seg_601 seg_602 seg_603 seg_530 seg_531 seg_532 seg_604 seg_605 seg_606 seg_607 seg_533 seg_534 seg_535 seg_608 seg_609 seg_610 seg_611 seg_536 seg_538 seg_539 seg_612 seg_613 seg_615 seg_616 seg_540 seg_542 seg_543 seg_617 seg_618 seg_619 seg_620 seg_544 seg_545 seg_546 seg_622 seg_623 seg_624 seg_625 seg_547 seg_548 seg_549 seg_626 seg_627 seg_628 seg_629 seg_550 seg_551 seg_552 seg_630 seg_631 seg_632 seg_633 seg_553 seg_554 seg_555 seg_634 seg_635 seg_637 seg_638 seg_556 seg_558 seg_559 seg_639 seg_641 seg_642 seg_644 seg_561 seg_562 seg_563 seg_645 seg_646 seg_647 seg_648 seg_564 seg_565 seg_566 seg_649 seg_650 seg_651 seg_652 seg_567 seg_568 seg_570 seg_654 seg_655 seg_656 seg_657 seg_572 seg_573 seg_574 seg_658 seg_659 seg_660 seg_661 seg_575 seg_576 seg_577 seg_662 seg_663 seg_664 seg_665 seg_578 seg_513 seg_519 seg_666 seg_565 seg_570 seg_573 seg_537 seg_541 seg_557 seg_614 seg_621 seg_636 seg_640 seg_563 seg_571 seg_560 seg_643 seg_598 seg_653 Colour 303800 Xq28 OPN1MW seg_567 seg_568 seg_569 seg_571 seg_504 seg_505 seg_506 seg_209 seg_210 blindness seg_572 seg_574 seg_575 seg_576 seg_507 seg_508 seg_509 seg_211 seg_212 seg_577 seg_578 seg_579 seg_580 seg_510 seg_511 seg_512 seg_213 seg_214 seg_581 seg_582 seg_583 seg_584 seg_514 seg_515 seg_516 seg_215 seg_585 seg_586 seg_587 seg_588 seg_517 seg_518 seg_520 seg_589 seg_590 seg_591 seg_592 seg_521 seg_522 seg_523 seg_593 seg_594 seg_595 seg_596 seg_524 seg_525 seg_526 seg_597 seg_599 seg_600 seg_601 seg_527 seg_528 seg_529 seg_602 seg_603 seg_604 seg_605 seg_530 seg_531 seg_532 seg_606 seg_607 seg_608 seg_609 seg_533 seg_534 seg_535 seg_610 seg_611 seg_612 seg_613 seg_536 seg_538 seg_539 seg_615 seg_616 seg_617 seg_618 seg_540 seg_542 seg_543 seg_619 seg_620 seg_622 seg_623 seg_544 seg_545 seg_546 seg_624 seg_625 seg_626 seg_627 seg_547 seg_548 seg_549 seg_628 seg_629 seg_630 seg_631 seg_550 seg_551 seg_552 seg_632 seg_633 seg_634 seg_635 seg_553 seg_554 seg_555 seg_637 seg_638 seg_639 seg_641 seg_556 seg_558 seg_559 seg_642 seg_644 seg_645 seg_646 seg_561 seg_562 seg_563 seg_647 seg_648 seg_649 seg_650 seg_564 seg_565 seg_566 seg_651 seg_652 seg_654 seg_655 seg_567 seg_568 seg_570 seg_656 seg_657 seg_658 seg_659 seg_572 seg_573 seg_574 seg_660 seg_661 seg_662 seg_663 seg_575 seg_576 seg_577 seg_664 seg_665 seg_666 seg_565 seg_578 seg_513 seg_519 seg_570 seg_573 seg_614 seg_621 seg_537 seg_541 seg_557 seg_636 seg_640 seg_643 seg_598 seg_569 seg_571 seg_560 seg_653 Diabetes 304800 Xq28 AVPR2 seg_564 seg_566 seg_567 seg_568 seg_504 seg_505 seg_506 seg_209 seg_210 insipidus, seg_569 seg_571 seg_572 seg_574 seg_507 seg_508 seg_509 seg_211 seg_212 nephrogenic seg_575 seg_576 seg_577 seg_578 seg_510 seg_511 seg_512 seg_213 seg_214 seg_579 seg_580 seg_581 seg_582 seg_514 seg_515 seg_516 seg_215 seg_583 seg_584 seg_585 seg_586 seg_517 seg_518 seg_520 seg_587 seg_588 seg_589 seg_590 seg_521 seg_522 seg_523 seg_591 seg_592 seg_593 seg_594 seg_524 seg_525 seg_526 seg_595 seg_596 seg_597 seg_599 seg_527 seg_528 seg_529 seg_600 seg_601 seg_602 seg_603 seg_530 seg_531 seg_532 seg_604 seg_605 seg_606 seg_607 seg_533 seg_534 seg_535 seg_608 seg_609 seg_610 seg_611 seg_536 seg_538 seg_539 seg_612 seg_613 seg_615 seg_616 seg_540 seg_542 seg_543 seg_617 seg_618 seg_619 seg_620 seg_544 seg_545 seg_546 seg_622 seg_623 seg_624 seg_625 seg_547 seg_548 seg_549 seg_626 seg_627 seg_628 seg_629 seg_550 seg_551 seg_552 seg_630 seg_631 seg_632 seg_633 seg_553 seg_554 seg_555 seg_634 seg_635 seg_637 seg_638 seg_556 seg_558 seg_559 seg_639 seg_641 seg_642 seg_644 seg_561 seg_562 seg_563 seg_645 seg_646 seg_647 seg_648 seg_564 seg_565 seg_566 seg_649 seg_650 seg_651 seg_652 seg_567 seg_568 seg_570 seg_654 seg_655 seg_656 seg_657 seg_572 seg_573 seg_574 seg_658 seg_659 seg_660 seg_661 seg_575 seg_576 seg_577 seg_662 seg_663 seg_664 seg_665 seg_578 seg_513 seg_519 seg_666 seg_565 seg_570 seg_573 seg_537 seg_541 seg_557 seg_614 seg_621 seg_636 seg_640 seg_569 seg_571 seg_560 seg_643 seg_598 seg_653 Dyskeratosis 305000 Xq28 DKC1 seg_577 seg_578 seg_579 seg_580 seg_511 seg_512 seg_514 seg_210 seg_211 congenita seg_581 seg_582 seg_583 seg_584 seg_515 seg_516 seg_517 seg_212 seg_213 seg_585 seg_586 seg_587 seg_588 seg_518 seg_520 seg_521 seg_214 seg_215 seg_589 seg_590 seg_591 seg_592 seg_522 seg_523 seg_524 seg_593 seg_594 seg_595 seg_596 seg_525 seg_526 seg_527 seg_597 seg_599 seg_600 seg_601 seg_528 seg_529 seg_530 seg_602 seg_603 seg_604 seg_605 seg_531 seg_532 seg_533 seg_606 seg_607 seg_608 seg_609 seg_534 seg_535 seg_536 seg_610 seg_611 seg_612 seg_613 seg_538 seg_539 seg_540 seg_615 seg_616 seg_617 seg_618 seg_542 seg_543 seg_544 seg_619 seg_620 seg_622 seg_623 seg_545 seg_546 seg_547 seg_624 seg_625 seg_626 seg_627 seg_548 seg_549 seg_550 seg_628 seg_629 seg_630 seg_631 seg_551 seg_552 seg_553 seg_632 seg_633 seg_634 seg_635 seg_554 seg_555 seg_556 seg_637 seg_638 seg_639 seg_641 seg_558 seg_559 seg_561 seg_642 seg_644 seg_645 seg_646 seg_562 seg_563 seg_564 seg_647 seg_648 seg_649 seg_650 seg_565 seg_566 seg_567 seg_651 seg_652 seg_654 seg_655 seg_568 seg_570 seg_572 seg_656 seg_657 seg_658 seg_659 seg_573 seg_574 seg_575 seg_660 seg_661 seg_662 seg_663 seg_576 seg_577 seg_578 seg_664 seg_665 seg_666 seg_614 seg_513 seg_519 seg_537 seg_621 seg_636 seg_640 seg_643 seg_541 seg_557 seg_569 seg_598 seg_653 seg_571 seg_560 Ectodermal 305100 Xq12-q13.1 ED1 seg_310 seg_311 seg_313 seg_314 seg_286 seg_287 seg_290 seg_111 seg_112 dysplasia, seg_315 seg_316 seg_317 seg_318 seg_291 seg_292 seg_294 seg_113 seg_114 anhidrotic seg_319 seg_320 seg_321 seg_322 seg_295 seg_296 seg_297 seg_115 seg_116 seg_323 seg_324 seg_326 seg_328 seg_298 seg_299 seg_302 seg_117 seg_118 seg_329 seg_330 seg_331 seg_332 seg_303 seg_304 seg_305 seg_119 seg_121 seg_334 seg_335 seg_337 seg_338 seg_306 seg_307 seg_308 seg_122 seg_124 seg_339 seg_340 seg_341 seg_342 seg_309 seg_311 seg_312 seg_125 seg_126 seg_344 seg_345 seg_346 seg_347 seg_313 seg_314 seg_315 seg_127 seg_120 seg_348 seg_349 seg_350 seg_351 seg_316 seg_317 seg_318 seg_123 seg_352 seg_353 seg_354 seg_356 seg_319 seg_288 seg_289 seg_312 seg_325 seg_327 seg_333 seg_293 seg_300 seg_301 seg_336 seg_343 seg_355 seg_310 Faciogenital 305400 Xp11.21 FGD1 seg_226 seg_227 seg_228 seg_229 seg_251 seg_252 seg_253 seg_101 seg_102 dysplasia seg_230 seg_231 seg_232 seg_233 seg_254 seg_255 seg_256 seg_103 seg_104 (Aarskog seg_234 seg_235 seg_236 seg_237 seg_257 seg_258 seg_259 seg_105 seg_106 syndrome) seg_238 seg_239 seg_240 seg_242 seg_260 seg_262 seg_263 seg_243 seg_244 seg_245 seg_246 seg_265 seg_266 seg_267 seg_247 seg_249 seg_250 seg_251 seg_268 seg_269 seg_270 seg_252 seg_253 seg_254 seg_256 seg_271 seg_272 seg_273 seg_257 seg_258 seg_259 seg_260 seg_274 seg_275 seg_276 seg_261 seg_262 seg_263 seg_264 seg_277 seg_278 seg_279 seg_265 seg_266 seg_267 seg_268 seg_280 seg_281 seg_282 seg_269 seg_270 seg_271 seg_272 seg_283 seg_261 seg_264 seg_273 seg_274 seg_275 seg_276 seg_277 seg_278 seg_279 seg_280 seg_281 seg_282 seg_284 seg_241 seg_248 seg_255 seg_283 Glucose-6- 305900 Xq28 G6PD seg_574 seg_575 seg_576 seg_577 seg_508 seg_509 seg_510 seg_209 seg_210 phosphate seg_578 seg_579 seg_580 seg_581 seg_511 seg_512 seg_514 seg_211 seg_212 dehydrogenase seg_582 seg_583 seg_584 seg_585 seg_515 seg_516 seg_517 seg_213 seg_214 deficiency seg_586 seg_587 seg_588 seg_589 seg_518 seg_520 seg_521 seg_215 seg_590 seg_591 seg_592 seg_593 seg_522 seg_523 seg_524 seg_594 seg_595 seg_596 seg_597 seg_525 seg_526 seg_527 seg_599 seg_600 seg_601 seg_602 seg_528 seg_529 seg_530 seg_603 seg_604 seg_605 seg_606 seg_531 seg_532 seg_533 seg_607 seg_608 seg_609 seg_610 seg_534 seg_535 seg_536 seg_611 seg_612 seg_613 seg_615 seg_538 seg_539 seg_540 seg_616 seg_617 seg_618 seg_619 seg_542 seg_543 seg_544 seg_620 seg_622 seg_623 seg_624 seg_545 seg_546 seg_547 seg_625 seg_626 seg_627 seg_628 seg_548 seg_549 seg_550 seg_629 seg_630 seg_631 seg_632 seg_551 seg_552 seg_553 seg_633 seg_634 seg_635 seg_637 seg_554 seg_555 seg_556 seg_638 seg_639 seg_641 seg_642 seg_558 seg_559 seg_561 seg_644 seg_645 seg_646 seg_647 seg_562 seg_563 seg_564 seg_648 seg_649 seg_650 seg_651 seg_565 seg_566 seg_567 seg_652 seg_654 seg_655 seg_656 seg_568 seg_570 seg_572 seg_657 seg_658 seg_659 seg_660 seg_573 seg_574 seg_575 seg_661 seg_662 seg_663 seg_664 seg_576 seg_577 seg_578 seg_665 seg_666 seg_573 seg_614 seg_513 seg_519 seg_537 seg_621 seg_636 seg_640 seg_643 seg_541 seg_557 seg_569 seg_598 seg_653 seg_571 seg_560 Glycogen 306000 Xp22.2-p22.1 PHKA2 seg_91 seg_92 seg_93 seg_94 seg_95 seg_111 seg_112 seg_113 seg_35 seg_36 seg_37 storage seg_96 seg_97 seg_98 seg_99 seg_100 seg_114 seg_115 seg_117 seg_38 seg_39 seg_40 disease seg_101 seg_102 seg_103 seg_104 seg_119 seg_120 seg_121 seg_41 seg_42 seg_43 type VIII seg_105 seg_106 seg_107 seg_108 seg_122 seg_123 seg_124 seg_44 seg_45 seg_46 seg_109 seg_111 seg_112 seg_113 seg_125 seg_126 seg_127 seg_47 seg_48 seg_49 seg_114 seg_115 seg_116 seg_117 seg_128 seg_130 seg_131 seg_50 seg_51 seg_52 seg_118 seg_119 seg_121 seg_122 seg_132 seg_133 seg_134 seg_53 seg_55 seg_56 seg_124 seg_125 seg_126 seg_127 seg_135 seg_136 seg_137 seg_57 seg_58 seg_59 seg_128 seg_129 seg_131 seg_132 seg_138 seg_139 seg_140 seg_61 seg_60 seg_54 seg_133 seg_134 seg_135 seg_136 seg_141 seg_142 seg_143 seg_137 seg_138 seg_139 seg_140 seg_144 seg_145 seg_146 seg_141 seg_142 seg_110 seg_123 seg_147 seg_148 seg_149 seg_130 seg_120 seg_150 seg_151 seg_152 seg_153 seg_156 seg_157 seg_158 seg_159 seg_160 seg_161 seg_162 seg_163 seg_164 seg_165 seg_166 seg_167 seg_168 seg_169 seg_171 seg_172 seg_173 seg_174 seg_175 seg_176 seg_177 seg_178 seg_179 seg_180 seg_181 seg_182 seg_183 seg_184 seg_185 seg_186 seg_109 seg_116 seg_118 seg_129 seg_154 seg_155 seg_170 Gonadal 306100 Xp22.11-p21.2 GDXY ~ dysgenesis (XY female type) Granulomatous 306400 Xp21.1 CYBB seg_165 seg_166 seg_167 seg_168 seg_200 seg_201 seg_202 seg_79 seg_80 seg_81 disease seg_169 seg_170 seg_171 seg_172 seg_203 seg_204 seg_205 seg_82 seg_83 seg_84 (chronic) seg_173 seg_174 seg_175 seg_176 seg_206 seg_207 seg_208 seg_85 seg_86 seg_87 seg_177 seg_178 seg_179 seg_181 seg_210 seg_211 seg_212 seg_88 seg_89 seg_90 seg_182 seg_183 seg_184 seg_185 seg_213 seg_214 seg_215 seg_91 seg_186 seg_187 seg_188 seg_189 seg_216 seg_217 seg_218 seg_191 seg_192 seg_193 seg_195 seg_209 seg_196 seg_180 seg_190 seg_194 Haemophilia A 306700 Xq28 F8 seg_579 seg_580 seg_581 seg_582 seg_512 seg_514 seg_515 seg_210 seg_211 seg_583 seg_584 seg_585 seg_586 seg_516 seg_517 seg_518 seg_212 seg_213 seg_587 seg_588 seg_589 seg_590 seg_520 seg_521 seg_522 seg_214 seg_215 seg_591 seg_592 seg_593 seg_594 seg_523 seg_524 seg_525 seg_595 seg_596 seg_597 seg_599 seg_526 seg_527 seg_528 seg_600 seg_601 seg_602 seg_603 seg_529 seg_530 seg_531 seg_604 seg_605 seg_606 seg_607 seg_532 seg_533 seg_534 seg_608 seg_609 seg_610 seg_611 seg_535 seg_536 seg_538 seg_612 seg_613 seg_615 seg_616 seg_539 seg_540 seg_542 seg_617 seg_618 seg_619 seg_620 seg_543 seg_544 seg_545 seg_622 seg_623 seg_624 seg_625 seg_546 seg_547 seg_548 seg_626 seg_627 seg_628 seg_629 seg_549 seg_550 seg_551 seg_630 seg_631 seg_632 seg_633 seg_552 seg_553 seg_554 seg_634 seg_635 seg_637 seg_638 seg_555 seg_556 seg_558 seg_639 seg_641 seg_642 seg_644 seg_553 seg_561 seg_562 seg_645 seg_646 seg_647 seg_648 seg_563 seg_564 seg_565 seg_649 seg_650 seg_651 seg_652 seg_566 seg_567 seg_568 seg_654 seg_655 seg_656 seg_657 seg_570 seg_572 seg_573 seg_658 seg_659 seg_660 seg_661 seg_574 seg_575 seg_576 seg_662 seg_663 seg_664 seg_665 seg_577 seg_578 seg_513 seg_666 seg_614 seg_621 seg_636 seg_519 seg_537 seg_541 seg_640 seg_643 seg_598 seg_653 seg_557 seg_569 seg_571 seg_560 Haemophilia B 306900 Xq27.1-q27.2 F9 seg_506 seg_507 seg_509 seg_510 seg_445 seg_446 seg_447 seg_194 seg_195 seg_511 seg_512 seg_513 seg_514 seg_448 seg_449 seg_450 seg_196 seg_197 seg_515 seg_516 seg_517 seg_518 seg_451 seg_452 seg_453 seg_198 seg_200 seg_519 seg_520 seg_521 seg_522 seg_454 seg_456 seg_457 seg_201 seg_202 seg_523 seg_524 seg_525 seg_526 seg_459 seg_460 seg_462 seg_203 seg_204 seg_527 seg_528 seg_529 seg_530 seg_463 seg_464 seg_465 seg_205 seg_206 seg_531 seg_532 seg_533 seg_534 seg_466 seg_467 seg_469 seg_199 seg_535 seg_536 seg_537 seg_538 seg_470 seg_471 seg_472 seg_540 seg_541 seg_542 seg_543 seg_473 seg_474 seg_475 seg_544 seg_545 seg_546 seg_547 seg_476 seg_478 seg_480 seg_548 seg_549 seg_550 seg_551 seg_481 seg_482 seg_484 seg_552 seg_553 seg_554 seg_555 seg_485 seg_486 seg_487 seg_557 seg_558 seg_559 seg_505 seg_488 seg_489 seg_490 seg_508 seg_539 seg_556 seg_491 seg_492 seg_493 seg_496 seg_497 seg_498 seg_499 seg_500 seg_501 seg_502 seg_455 seg_458 seg_468 seg_477 seg_479 seg_483 seg_494 seg_495 seg_461 Hydrocephalus 307000 Xq28 L1CAM seg_564 seg_566 seg_567 seg_568 seg_504 seg_505 seg_506 seg_209 seg_210 (aqueduct seg_569 seg_571 seg_572 seg_574 seg_507 seg_508 seg_509 seg_211 seg_212 stenosis) seg_575 seg_576 seg_577 seg_578 seg_510 seg_511 seg_512 seg_213 seg_214 seg_579 seg_580 seg_581 seg_582 seg_514 seg_515 seg_516 seg_215 seg_583 seg_584 seg_585 seg_586 seg_517 seg_518 seg_520 seg_587 seg_588 seg_589 seg_590 seg_521 seg_522 seg_523 seg_591 seg_592 seg_593 seg_594 seg_524 seg_525 seg_526 seg_595 seg_596 seg_597 seg_599 seg_527 seg_528 seg_529 seg_600 seg_601 seg_602 seg_603 seg_530 seg_531 seg_532 seg_604 seg_605 seg_606 seg_607 seg_533 seg_534 seg_535 seg_603 seg_609 seg_610 seg_611 seg_536 seg_538 seg_539 seg_612 seg_613 seg_615 seg_616 seg_540 seg_542 seg_543 seg_617 seg_618 seg_619 seg_620 seg_544 seg_545 seg_546 seg_622 seg_623 seg_624 seg_625 seg_547 seg_548 seg_549 seg_626 seg_627 seg_628 seg_629 seg_550 seg_551 seg_552 seg_630 seg_631 seg_632 seg_633 seg_553 seg_554 seg_555 seg_634 seg_635 seg_637 seg_638 seg_556 seg_558 seg_555 seg_639 seg_641 seg_642 seg_644 seg_561 seg_562 seg_563 seg_645 seg_646 seg_647 seg_648 seg_564 seg_565 seg_566 seg_649 seg_650 seg_651 seg_652 seg_567 seg_568 seg_570 seg_654 seg_655 seg_656 seg_657 seg_572 seg_573 seg_574 seg_658 seg_659 seg_660 seg_661 seg_575 seg_576 seg_577 seg_662 seg_663 seg_664 seg_665 seg_578 seg_513 seg_519 seg_666 seg_565 seg_570 seg_573 seg_537 seg_541 seg_557 seg_614 seg_621 seg_636 seg_640 seg_569 seg_571 seg_560 seg_643 seg_598 seg_653 Hypophosphataemic 307800 Xp22.2-p22.1 PHEX seg_100 seg_101 seg_102 seg_103 seg_126 seg_127 seg_128 seg_49 seg_50 seg_51 rickets seg_104 seg_105 seg_106 seg_107 seg_130 seg_131 seg_132 seg_52 seg_53 seg_55 seg_108 seg_109 seg_111 seg_112 seg_133 seg_134 seg_135 seg_56 seg_57 seg_58 seg_113 seg_114 seg_115 seg_116 seg_136 seg_137 seg_138 seg_59 seg_61 seg_62 seg_117 seg_118 seg_119 seg_121 seg_139 seg_140 seg_141 seg_63 seg_64 seg_60 seg_122 seg_124 seg_125 seg_126 seg_142 seg_143 seg_144 seg_65 seg_54 seg_127 seg_128 seg_129 seg_131 seg_145 seg_146 seg_147 seg_132 seg_133 seg_134 seg_135 seg_148 seg_149 seg_150 seg_136 seg_137 seg_138 seg_139 seg_151 seg_152 seg_153 seg_140 seg_141 seg_142 seg_143 seg_156 seg_157 seg_158 seg_144 seg_145 seg_147 seg_148 seg_159 seg_160 seg_161 seg_149 seg_150 seg_151 seg_153 seg_162 seg_163 seg_164 seg_154 seg_155 seg_156 seg_110 seg_165 seg_166 seg_167 seg_123 seg_130 seg_146 seg_120 seg_168 seg_169 seg_171 seg_152 seg_172 seg_173 seg_174 seg_175 seg_176 seg_177 seg_178 seg_179 seg_180 seg_181 seg_182 seg_183 seg_184 seg_185 seg_186 seg_187 seg_188 seg_189 seg_191 seg_192 seg_193 seg_195 seg_129 seg_154 seg_190 seg_155 seg_194 seg_170 Lesch- 308000 Xq26-q27.2 HPRT1 seg_479 seg_480 seg_481 seg_482 seg_421 seg_422 seg_423 seg_187 seg_188 Nyhan seg_483 seg_484 seg_485 seg_486 seg_424 seg_425 seg_426 seg_189 seg_190 syndrome seg_487 seg_488 seg_489 seg_490 seg_427 seg_428 seg_429 seg_191 seg_192 (hypoxanthine- seg_491 seg_492 seg_493 seg_494 seg_430 seg_431 seg_432 seg_193 seg_194 guanine- seg_495 seg_496 seg_497 seg_498 seg_433 seg_434 seg_436 seg_195 seg_196 phosphoribosyl seg_499 seg_501 seg_502 seg_503 seg_438 seg_439 seg_440 seg_197 seg_198 transferase seg_504 seg_506 seg_507 seg_509 seg_441 seg_442 seg_443 seg_200 seg_201 deficiency) seg_510 seg_511 seg_512 seg_513 seg_444 seg_445 seg_446 seg_202 seg_203 seg_514 seg_515 seg_516 seg_517 seg_447 seg_448 seg_449 seg_199 seg_518 seg_519 seg_520 seg_521 seg_450 seg_451 seg_452 seg_522 seg_523 seg_524 seg_525 seg_453 seg_454 seg_456 seg_526 seg_527 seg_528 seg_529 seg_457 seg_459 seg_460 seg_530 seg_531 seg_532 seg_533 seg_462 seg_463 seg_464 seg_534 seg_535 seg_536 seg_537 seg_465 seg_466 seg_467 seg_538 seg_540 seg_541 seg_542 seg_469 seg_470 seg_471 seg_543 seg_544 seg_545 seg_546 seg_472 seg_473 seg_474 seg_547 seg_548 seg_549 seg_500 seg_475 seg_476 seg_478 seg_505 seg_508 seg_539 seg_480 seg_481 seg_482 seg_484 seg_485 seg_486 seg_487 seg_488 seg_489 seg_490 seg_491 seg_492 seg_493 seg_496 seg_497 seg_435 seg_437 seg_455 seg_458 seg_468 seg_477 seg_479 seg_483 seg_494 seg_495 seg_461 Incontinentia 308300 Xq28 IKBKG seg_574 seg_575 seg_576 seg_577 seg_508 seg_509 seg_510 seg_209 seg_210 pigmenti seg_578 seg_579 seg_580 seg_581 seg_511 seg_512 seg_514 seg_211 seg_212 seg_582 seg_583 seg_584 seg_585 seg_515 seg_516 seg_517 seg_213 seg_214 seg_586 seg_587 seg_588 seg_589 seg_518 seg_520 seg_521 seg_215 seg_590 seg_591 seg_592 seg_593 seg_522 seg_523 seg_524 seg_594 seg_595 seg_596 seg_597 seg_525 seg_526 seg_527 seg_599 seg_600 seg_601 seg_602 seg_528 seg_529 seg_530 seg_603 seg_604 seg_605 seg_606 seg_531 seg_532 seg_533 seg_607 seg_608 seg_609 seg_610 seg_534 seg_535 seg_536 seg_611 seg_612 seg_613 seg_615 seg_538 seg_539 seg_540 seg_616 seg_617 seg_618 seg_619 seg_542 seg_543 seg_544 seg_620 seg_622 seg_623 seg_624 seg_545 seg_546 seg_547 seg_625 seg_626 seg_627 seg_628 seg_548 seg_549 seg_550 seg_629 seg_630 seg_631 seg_632 seg_551 seg_552 seg_553 seg_633 seg_634 seg_635 seg_637 seg_554 seg_555 seg_556 seg_638 seg_639 seg_641 seg_642 seg_558 seg_559 seg_561 seg_644 seg_645 seg_646 seg_647 seg_562 seg_563 seg_564 seg_648 seg_649 seg_650 seg_651 seg_565 seg_566 seg_567 seg_652 seg_654 seg_655 seg_656 seg_568 seg_570 seg_572 seg_657 seg_658 seg_659 seg_660 seg_573 seg_574 seg_575 seg_661 seg_662 seg_663 seg_664 seg_576 seg_577 seg_578 seg_665 seg_666 seg_573 seg_614 seg_513 seg_519 seg_537 seg_621 seg_636 seg_640 seg_643 seg_541 seg_557 seg_569 seg_598 seg_653 seg_571 seg_560 Kallmann 308700 Xp22.3 KAL1 seg_48 seg_49 seg_50 seg_51 seg_52 seg_52 seg_53 seg_54 seg_8 seg_9 seg_10 syndrome seg_55 seg_54 seg_55 seg_56 seg_57 seg_55 seg_56 seg_57 seg_11 seg_12 seg_13 seg_58 seg_59 seg_60 seg_61 seg_63 seg_58 seg_60 seg_61 seg_14 seg_16 seg_17 seg_64 seg_65 seg_66 seg_67 seg_68 seg_63 seg_64 seg_65 seg_18 seg_19 seg_20 seg_69 seg_70 seg_71 seg_73 seg_74 seg_66 seg_67 seg_68 seg_21 seg_22 seg_23 seg_75 seg_76 seg_77 seg_78 seg_79 seg_69 seg_70 seg_71 seg_24 seg_25 seg_26 seg_80 seg_81 seg_82 seg_83 seg_84 seg_72 seg_73 seg_74 seg_27 seg_28 seg_29 seg_85 seg_47 seg_62 seg_72 seg_75 seg_76 seg_77 seg_15 seg_78 seg_79 seg_80 seg_81 seg_82 seg_83 seg_84 seg_85 seg_86 seg_87 seg_88 seg_89 seg_91 seg_92 seg_93 seg_95 seg_96 seg_97 seg_98 seg_59 seg_62 seg_90 seg_94 Keratosis 308800 Xp22.1 SAT seg_112 seg_113 seg_114 seg_115 seg_145 seg_146 seg_147 seg_56 seg_57 seg_58 follicularis seg_116 seg_117 seg_118 seg_119 seg_148 seg_149 seg_150 seg_59 seg_61 seg_62 spinulosa seg_121 seg_122 seg_124 seg_125 seg_151 seg_152 seg_153 seg_63 seg_64 seg_60 seg_126 seg_127 seg_128 seg_129 seg_156 seg_157 seg_158 seg_65 seg_54 seg_131 seg_132 seg_133 seg_134 seg_159 seg_160 seg_161 seg_135 seg_136 seg_137 seg_138 seg_162 seg_163 seg_164 seg_139 seg_140 seg_141 seg_142 seg_165 seg_166 seg_167 seg_143 seg_144 seg_145 seg_147 seg_168 seg_169 seg_171 seg_148 seg_149 seg_150 seg_151 seg_172 seg_173 seg_174 seg_153 seg_154 seg_155 seg_156 seg_175 seg_176 seg_177 seg_157 seg_110 seg_123 seg_130 seg_178 seg_179 seg_180 seg_146 seg_120 seg_152 seg_181 seg_182 seg_183 seg_184 seg_185 seg_186 seg_187 seg_188 seg_189 seg_191 seg_192 seg_193 seg_195 seg_154 seg_190 seg_155 seg_194 seg_170 Lowe 309000 Xq26.1 OCRL seg_474 seg_475 seg_477 seg_478 seg_420 seg_421 seg_422 seg_185 seg_186 (oculocerebrorenal) seg_479 seg_480 seg_481 seg_482 seg_423 seg_424 seg_425 seg_187 seg_188 syndrome seg_483 seg_484 seg_485 seg_486 seg_426 seg_427 seg_428 seg_189 seg_190 seg_487 seg_488 seg_489 seg_490 seg_429 seg_430 seg_431 seg_191 seg_192 seg_491 seg_492 seg_493 seg_494 seg_432 seg_433 seg_434 seg_183 seg_495 seg_496 seg_497 seg_498 seg_436 seg_438 seg_439 seg_499 seg_501 seg_502 seg_503 seg_440 seg_441 seg_442 seg_476 seg_500 seg_443 seg_435 seg_437 Menkes 309400 Xq12-q13 ATP7A seg_353 seg_354 seg_356 seg_358 seg_317 seg_318 seg_319 seg_128 seg_129 syndrome seg_359 seg_360 seg_361 seg_362 seg_130 seg_131 seg_363 seg_364 seg_365 seg_366 seg_133 seg_134 seg_355 seg_357 seg_135 seg_132 Renpenning 309500 Xp11.23 PQBP1 seg_199 seg_201 seg_203 seg_204 seg_220 seg_221 seg_222 seg_96 seg_97 seg_98 Syndrome seg_205 seg_206 seg_207 seg_208 seg_223 seg_224 seg_225 seg_99 seg_100 seg_209 seg_210 seg_211 seg_212 seg_226 seg_227 seg_228 seg_101 seg_102 seg_213 seg_214 seg_215 seg_216 seg_229 seg_230 seg_232 seg_103 seg_104 seg_217 seg_218 seg_219 seg_220 seg_234 seg_235 seg_236 seg_105 seg_93 seg_221 seg_222 seg_223 seg_224 seg_237 seg_238 seg_239 seg_95 seg_225 seg_226 seg_227 seg_228 seg_240 seg_241 seg_242 seg_229 seg_230 seg_231 seg_232 seg_243 seg_245 seg_246 seg_233 seg_234 seg_235 seg_236 seg_247 seg_248 seg_249 seg_237 seg_238 seg_239 seg_240 seg_250 seg_251 seg_252 seg_242 seg_243 seg_244 seg_245 seg_253 seg_254 seg_255 seg_246 seg_247 seg_249 seg_250 seg_256 seg_257 seg_258 seg_251 seg_252 seg_253 seg_254 seg_259 seg_260 seg_262 seg_256 seg_257 seg_258 seg_259 seg_263 seg_265 seg_266 seg_260 seg_261 seg_262 seg_263 seg_267 seg_268 seg_269 seg_264 seg_200 seg_202 seg_241 seg_270 seg_271 seg_231 seg_248 seg_255 seg_233 seg_244 seg_261 seg_264 Mental 309530 Xp11.3-q21.1 MRX1 seg_218 seg_219 seg_220 seg_221 seg_245 seg_246 seg_247 seg_101 seg_102 retardation, seg_222 seg_223 seg_224 seg_225 seg_248 seg_249 seg_250 seg_103 seg_104 with or seg_226 seg_227 seg_228 seg_229 seg_251 seg_252 seg_253 seg_105 seg_106 without seg_230 seg_231 seg_232 seg_233 seg_254 seg_255 seg_256 fragile site seg_234 seg_235 seg_236 seg_237 seg_257 seg_258 seg_259 (numerous seg_238 seg_239 seg_240 seg_242 seg_260 seg_262 seg_263 specific seg_243 seg_244 seg_245 seg_246 seg_265 seg_266 seg_267 types) seg_247 seg_249 seg_250 seg_251 seg_268 seg_269 seg_270 seg_252 seg_253 seg_254 seg_256 seg_271 seg_272 seg_273 seg_257 seg_258 seg_259 seg_260 seg_274 seg_275 seg_276 seg_261 seg_262 seg_263 seg_264 seg_277 seg_278 seg_279 seg_265 seg_266 seg_267 seg_268 seg_280 seg_281 seg_282 seg_269 seg_270 seg_271 seg_272 seg_283 seg_244 seg_261 seg_273 seg_274 seg_275 seg_276 seg_264 seg_277 seg_278 seg_279 seg_241 seg_248 seg_255 Coffin- 309580 Xq13 ATRX seg_350 seg_351 seg_352 seg_353 seg_317 seg_318 seg_319 seg_128 seg_129 Lowry seg_354 seg_356 seg_358 seg_359 seg_130 seg_131 syndrome seg_360 seg_361 seg_362 seg_363 seg_133 seg_134 seg_364 seg_365 seg_366 seg_355 seg_135 seg_132 seg_357 Microphthal 309800 Xq27-q28 MAA seg_561 seg_562 seg_563 seg_564 seg_503 seg_504 seg_505 seg_208 seg_209 mia with seg_566 seg_567 seg_568 seg_569 seg_506 seg_507 seg_508 seg_210 seg_211 multiple seg_571 seg_572 seg_574 seg_575 seg_509 seg_510 seg_511 seg_212 anomalies seg_576 seg_577 seg_578 seg_579 seg_512 seg_514 seg_515 (Lenz seg_580 seg_581 seg_582 seg_583 seg_516 seg_517 seg_518 syndrome) seg_584 seg_585 seg_586 seg_587 seg_520 seg_521 seg_522 seg_588 seg_589 seg_590 seg_591 seg_523 seg_524 seg_525 seg_592 seg_593 seg_594 seg_595 seg_526 seg_527 seg_528 seg_596 seg_560 seg_565 seg_570 seg_529 seg_530 seg_531 seg_573 seg_513 seg_519 Muscular 310300 Xq28 EMD seg_567 seg_568 seg_569 seg_571 seg_504 seg_505 seg_506 seg_209 seg_210 dystrophy seg_572 seg_574 seg_575 seg_576 seg_507 seg_508 seg_509 seg_211 seg_212 (Becker, seg_577 seg_578 seg_579 seg_580 seg_510 seg_511 seg_512 seg_213 seg_214 Duchenne seg_581 seg_582 seg_583 seg_584 seg_514 seg_515 seg_516 seg_215 and Emery- seg_585 seg_586 seg_587 seg_588 seg_517 seg_518 seg_520 Dreifuss seg_589 seg_590 seg_591 seg_592 seg_521 seg_522 seg_523 types) seg_593 seg_594 seg_595 seg_596 seg_524 seg_525 seg_526 seg_597 seg_599 seg_600 seg_601 seg_527 seg_528 seg_529 seg_602 seg_603 seg_604 seg_605 seg_530 seg_531 seg_532 seg_606 seg_607 seg_608 seg_609 seg_533 seg_534 seg_535 seg_610 seg_611 seg_612 seg_613 seg_536 seg_538 seg_539 seg_615 seg_616 seg_617 seg_618 seg_540 seg_542 seg_543 seg_619 seg_620 seg_622 seg_623 seg_544 seg_545 seg_546 seg_624 seg_625 seg_626 seg_627 seg_547 seg_548 seg_549 seg_628 seg_629 seg_630 seg_631 seg_550 seg_551 seg_552 seg_632 seg_633 seg_634 seg_635 seg_553 seg_554 seg_555 seg_637 seg_638 seg_639 seg_641 seg_556 seg_558 seg_559 seg_642 seg_644 seg_645 seg_646 seg_561 seg_562 seg_563 seg_647 seg_648 seg_649 seg_650 seg_564 seg_565 seg_566 seg_651 seg_652 seg_654 seg_655 seg_567 seg_568 seg_570 seg_656 seg_657 seg_658 seg_659 seg_572 seg_573 seg_574 seg_660 seg_661 seg_662 seg_663 seg_575 seg_576 seg_577 seg_664 seg_665 seg_666 seg_570 seg_578 seg_513 seg_519 seg_573 seg_614 seg_621 seg_636 seg_537 seg_541 seg_557 seg_640 seg_643 seg_598 seg_653 seg_569 seg_571 seg_560 Myotubular 310400 Xq28 MTM1 seg_562 seg_563 seg_564 seg_566 seg_504 seg_505 seg_506 seg_208 seg_209 myopathy seg_567 seg_568 seg_569 seg_571 seg_507 seg_508 seg_509 seg_210 seg_211 seg_572 seg_574 seg_575 seg_576 seg_510 seg_511 seg_512 seg_212 seg_213 seg_577 seg_578 seg_579 seg_580 seg_514 seg_515 seg_516 seg_214 seg_215 seg_581 seg_582 seg_583 seg_584 seg_517 seg_518 seg_520 seg_585 seg_586 seg_587 seg_588 seg_521 seg_522 seg_523 seg_589 seg_590 seg_591 seg_592 seg_524 seg_525 seg_526 seg_593 seg_594 seg_595 seg_596 seg_527 seg_528 seg_529 seg_597 seg_599 seg_600 seg_601 seg_530 seg_531 seg_532 seg_602 seg_603 seg_604 seg_605 seg_533 seg_534 seg_535 seg_606 seg_607 seg_608 seg_609 seg_536 seg_538 seg_539 seg_610 seg_611 seg_612 seg_613 seg_540 seg_542 seg_543 seg_615 seg_616 seg_617 seg_618 seg_544 seg_545 seg_546 seg_619 seg_620 seg_622 seg_623 seg_547 seg_548 seg_549 seg_624 seg_625 seg_626 seg_627 seg_550 seg_551 seg_552 seg_628 seg_629 seg_630 seg_631 seg_553 seg_554 seg_555 seg_632 seg_633 seg_634 seg_635 seg_556 seg_558 seg_559 seg_637 seg_638 seg_639 seg_641 seg_561 seg_562 seg_563 seg_642 seg_644 seg_645 seg_646 seg_564 seg_565 seg_566 seg_647 seg_648 seg_649 seg_650 seg_567 seg_568 seg_570 seg_651 seg_652 seg_654 seg_655 seg_572 seg_573 seg_574 seg_656 seg_657 seg_658 seg_659 seg_575 seg_576 seg_577 seg_660 seg_661 seg_662 seg_560 seg_513 seg_519 seg_537 seg_565 seg_570 seg_573 seg_614 seg_541 seg_557 seg_569 seg_621 seg_636 seg_640 seg_643 seg_571 seg_560 seg_598 seg_653 Night 310500 Xp11.4 CSNB1 seg_167 seg_168 seg_169 seg_170 seg_200 seg_201 seg_202 seg_80 seg_81 seg_82 blindness, seg_171 seg_172 seg_173 seg_174 seg_203 seg_204 seg_205 seg_83 seg_84 seg_85 congenital seg_175 seg_176 seg_177 seg_178 seg_206 seg_207 seg_208 seg_86 seg_87 seg_88 stationary seg_179 seg_181 seg_182 seg_183 seg_210 seg_211 seg_212 seg_89 seg_90 seg_91 seg_184 seg_185 seg_186 seg_187 seg_213 seg_214 seg_215 seg_92 seg_94 seg_93 seg_188 seg_189 seg_191 seg_192 seg_216 seg_217 seg_218 seg_193 seg_195 seg_196 seg_197 seg_219 seg_220 seg_221 seg_198 seg_199 seg_201 seg_180 seg_222 seg_223 seg_224 seg_190 seg_194 seg_200 seg_225 seg_209 Norrie's 310600 Xp11.4 NDP seg_174 seg_175 seg_176 seg_177 seg_208 seg_210 seg_211 seg_85 seg_86 seg_87 disease seg_178 seg_179 seg_181 seg_182 seg_212 seg_213 seg_214 seg_88 seg_89 seg_90 (pseudoglioma) seg_133 seg_184 seg_185 seg_186 seg_215 seg_216 seg_217 seg_91 seg_92 seg_94 seg_187 seg_188 seg_189 seg_191 seg_218 seg_219 seg_220 seg_96 seg_97 seg_98 seg_192 seg_193 seg_195 seg_196 seg_221 seg_222 seg_223 seg_99 seg_93 seg_95 seg_197 seg_198 seg_199 seg_201 seg_224 seg_225 seg_226 seg_203 seg_204 seg_205 seg_206 seg_227 seg_228 seg_229 seg_207 seg_208 seg_209 seg_210 seg_230 seg_232 seg_234 seg_211 seg_212 seg_213 seg_214 seg_235 seg_236 seg_237 seg_215 seg_216 seg_217 seg_180 seg_238 seg_239 seg_240 seg_190 seg_194 seg_200 seg_202 seg_241 seg_242 seg_243 seg_209 seg_231 seg_233 seg_244 Nystagmus, 310700 Xq26-q27 NYS1 seg_475 seg_477 seg_478 seg_479 seg_421 seg_422 seg_423 seg_186 seg_187 oculomotor seg_480 seg_481 seg_482 seg_483 seg_424 seg_425 seg_426 seg_188 seg_189 or ‘jerky’ seg_484 seg_485 seg_486 seg_487 seg_427 seg_428 seg_429 seg_190 seg_191 seg_488 seg_489 seg_490 seg_491 seg_430 seg_431 seg_432 seg_192 seg_193 seg_492 seg_493 seg_494 seg_495 seg_433 seg_434 seg_436 seg_194 seg_195 seg_496 seg_497 seg_498 seg_499 seg_438 seg_439 seg_440 seg_196 seg_197 seg_501 seg_502 seg_503 seg_504 seg_441 seg_442 seg_443 seg_198 seg_199 seg_506 seg_507 seg_509 seg_510 seg_444 seg_445 seg_446 seg_511 seg_512 seg_513 seg_514 seg_447 seg_448 seg_449 seg_515 seg_516 seg_517 seg_518 seg_450 seg_451 seg_452 seg_519 seg_520 seg_521 seg_522 seg_453 seg_454 seg_456 seg_523 seg_524 seg_525 seg_526 seg_457 seg_459 seg_460 seg_527 seg_528 seg_529 seg_530 seg_462 seg_463 seg_464 seg_531 seg_532 seg_533 seg_534 seg_465 seg_466 seg_467 seg_535 seg_536 seg_537 seg_538 seg_469 seg_470 seg_471 seg_540 seg_541 seg_542 seg_476 seg_472 seg_473 seg_474 seg_500 seg_505 seg_508 seg_539 seg_475 seg_476 seg_478 seg_480 seg_481 seg_482 seg_484 seg_485 seg_486 seg_487 seg_488 seg_489 seg_490 seg_491 seg_492 seg_493 seg_435 seg_437 seg_455 seg_458 seg_468 seg_477 seg_479 seg_483 seg_494 seg_461 Orofaciodigital 311200 Xp22.3-p22.2 OFD1 seg_52 seg_53 seg_54 seg_55 seg_56 seg_56 seg_57 seg_58 seg_14 seg_16 seg_17 syndrome seg_57 seg_58 seg_59 seg_60 seg_61 seg_60 seg_61 seg_63 seg_18 seg_19 seg_20 (type I) seg_63 seg_64 seg_65 seg_66 seg_67 seg_64 seg_65 seg_66 seg_21 seg_22 seg_23 seg_68 seg_69 seg_70 seg_71 seg_73 seg_67 seg_68 seg_69 seg_24 seg_25 seg_26 seg_74 seg_75 seg_76 seg_77 seg_78 seg_70 seg_71 seg_72 seg_27 seg_28 seg_29 seg_79 seg_80 seg_81 seg_82 seg_83 seg_73 seg_74 seg_75 seg_30 seg_31 seg_32 seg_84 seg_85 seg_86 seg_87 seg_88 seg_76 seg_77 seg_78 seg_33 seg_34 seg_35 seg_89 seg_90 seg_91 seg_92 seg_93 seg_79 seg_80 seg_81 seg_36 seg_37 seg_38 seg_94 seg_95 seg_96 seg_97 seg_98 seg_82 seg_83 seg_84 seg_39 seg_40 seg_41 seg_99 seg_100 seg_101 seg_102 seg_85 seg_86 seg_87 seg_42 seg_43 seg_44 seg_103 seg_104 seg_105 seg_106 seg_88 seg_89 seg_91 seg_45 seg_46 seg_47 seg_107 seg_108 seg_109 seg_62 seg_92 seg_93 seg_95 seg_48 seg_49 seg_50 seg_72 seg_96 seg_97 seg_98 seg_51 seg_52 seg_53 seg_99 seg_100 seg_101 seg_15 seg_102 seg_103 seg_104 seg_106 seg_107 seg_108 seg_110 seg_111 seg_112 seg_113 seg_114 seg_115 seg_117 seg_119 seg_120 seg_121 seg_122 seg_123 seg_124 seg_125 seg_126 seg_127 seg_128 seg_130 seg_131 seg_132 seg_133 seg_134 seg_135 seg_136 seg_137 seg_138 seg_139 seg_140 seg_141 seg_142 seg_143 seg_59 seg_62 seg_90 seg_94 seg_105 seg_109 seg_116 seg_118 seg_129 Ornithine 311250 Xp21.1 OTC seg_165 seg_166 seg_167 seg_168 seg_200 seg_201 seg_202 seg_80 seg_81 seg_82 transcarbamylase seg_169 seg_170 seg_171 seg_172 seg_203 seg_204 seg_205 seg_83 seg_84 seg_85 deficiency seg_173 seg_174 seg_175 seg_176 seg_206 seg_207 seg_208 seg_86 seg_87 seg_88 (type I hyper- seg_177 seg_178 seg_179 seg_181 seg_210 seg_211 seg_212 seg_89 seg_90 seg_91 ammonaemia) seg_182 seg_183 seg_184 seg_185 seg_213 seg_214 seg_215 seg_92 seg_186 seg_187 seg_188 seg_189 seg_216 seg_217 seg_218 seg_191 seg_192 seg_193 seg_195 seg_209 seg_196 seg_180 seg_190 seg_194 Phosphogly 311800 Xq13 PGK1 seg_353 seg_354 seg_356 seg_358 seg_317 seg_318 seg_319 seg_128 seg_129 cerate kinase seg_359 seg_360 seg_361 seg_362 seg_130 seg_131 deficiency seg_383 seg_364 seg_365 seg_366 seg_133 seg_134 seg_355 seg_357 seg_135 seg_132 Phosphoribosyl- 311850 Xq22-q24 PRPS1 seg_392 seg_393 seg_394 seg_395 seg_329 seg_331 seg_332 seg_145 seg_146 pyrophosphate seg_396 seg_397 seg_398 seg_399 seg_333 seg_334 seg_336 seg_148 seg_149 synthetase seg_400 seg_401 seg_402 seg_403 seg_337 seg_338 seg_339 seg_150 seg_152 deficiency seg_404 seg_405 seg_406 seg_407 seg_340 seg_341 seg_342 seg_156 seg_157 seg_408 seg_409 seg_410 seg_411 seg_343 seg_344 seg_345 seg_158 seg_159 seg_412 seg_413 seg_414 seg_415 seg_346 seg_347 seg_348 seg_160 seg_161 seg_417 seg_418 seg_419 seg_420 seg_349 seg_350 seg_351 seg_162 seg_163 seg_421 seg_423 seg_425 seg_426 seg_352 seg_353 seg_355 seg_164 seg_165 seg_427 seg_428 seg_431 seg_432 seg_356 seg_357 seg_358 seg_166 seg_147 seg_434 seg_390 seg_416 seg_422 seg_362 seg_363 seg_364 seg_153 seg_154 seg_424 seg_429 seg_430 seg_435 seg_365 seg_366 seg_367 seg_155 seg_151 seg_433 seg_368 seg_369 seg_370 seg_371 seg_372 seg_373 seg_374 seg_375 seg_330 seg_335 seg_354 seg_359 seg_360 seg_361 Retinitis 312610 Xp21.1 RPGR seg_165 seg_166 seg_167 seg_168 seg_200 seg_201 seg_202 seg_80 seg_81 seg_82 pigmentosa seg_169 seg_170 seg_171 seg_172 seg_203 seg_204 seg_205 seg_83 seg_84 seg_85 seg_173 seg_174 seg_175 seg_176 seg_206 seg_207 seg_208 seg_86 seg_87 seg_88 seg_177 seg_178 seg_179 seg_181 seg_210 seg_211 seg_212 seg_89 seg_90 seg_91 seg_182 seg_183 seg_184 seg_185 seg_213 seg_214 seg_215 seg_186 seg_187 seg_188 seg_189 seg_216 seg_217 seg_218 seg_191 seg_192 seg_193 seg_195 seg_209 seg_196 seg_180 seg_190 seg_194 Retinoschisis 312700 Xp22.2-p22.1 RS1 seg_87 seg_88 seg_89 seg_90 seg_91 seg_101 seg_102 seg_103 seg_31 seg_32 seg_33 seg_92 seg_93 seg_94 seg_95 seg_96 seg_104 seg_106 seg_107 seg_34 seg_35 seg_36 seg_97 seg_98 seg_99 seg_100 seg_101 seg_108 seg_110 seg_111 seg_37 seg_38 seg_39 seg_102 seg_103 seg_104 seg_105 seg_112 seg_113 seg_114 seg_40 seg_41 seg_42 seg_106 seg_107 seg_108 seg_109 seg_115 seg_117 seg_119 seg_43 seg_44 seg_45 seg_111 seg_112 seg_113 seg_114 seg_120 seg_121 seg_122 seg_46 seg_47 seg_48 seg_115 seg_116 seg_117 seg_118 seg_123 seg_124 seg_125 seg_49 seg_50 seg_51 seg_119 seg_121 seg_122 seg_124 seg_126 seg_127 seg_128 seg_52 seg_53 seg_55 seg_125 seg_126 seg_127 seg_128 seg_130 seg_131 seg_132 seg_56 seg_57 seg_58 seg_129 seg_131 seg_132 seg_133 seg_133 seg_134 seg_135 seg_59 seg_61 seg_60 seg_134 seg_135 seg_136 seg_137 seg_136 seg_137 seg_138 seg_54 seg_138 seg_139 seg_140 seg_110 seg_139 seg_140 seg_141 seg_123 seg_130 seg_120 seg_142 seg_143 seg_144 seg_145 seg_146 seg_147 seg_148 seg_149 seg_150 seg_151 seg_152 seg_153 seg_156 seg_157 seg_158 seg_159 seg_160 seg_161 seg_162 seg_163 seg_164 seg_165 seg_166 seg_167 seg_168 seg_169 seg_171 seg_172 seg_173 seg_174 seg_175 seg_176 seg_177 seg_178 seg_179 seg_180 seg_181 seg_182 seg_183 seg_184 seg_185 seg_105 seg_109 seg_116 seg_118 seg_129 seg_154 seg_155 seg_170 Rett 312750 Xq28, Xp22 MECP2 seg_564 seg_566 seg_567 seg_568 seg_504 seg_505 seg_506 seg_209 seg_210 syndrome seg_569 seg_571 seg_572 seg_574 seg_507 seg_508 seg_509 seg_211 seg_212 seg_575 seg_576 seg_577 seg_578 seg_510 seg_511 seg_512 seg_213 seg_214 seg_579 seg_580 seg_581 seg_582 seg_514 seg_515 seg_516 seg_215 seg_583 seg_584 seg_585 seg_586 seg_517 seg_518 seg_520 seg_587 seg_588 seg_589 seg_590 seg_521 seg_522 seg_523 seg_591 seg_592 seg_593 seg_594 seg_524 seg_525 seg_526 seg_595 seg_596 seg_597 seg_599 seg_527 seg_528 seg_529 seg_600 seg_601 seg_602 seg_603 seg_530 seg_531 seg_532 seg_604 seg_605 seg_606 seg_607 seg_533 seg_534 seg_535 seg_608 seg_609 seg_610 seg_611 seg_536 seg_538 seg_539 seg_612 seg_613 seg_615 seg_616 seg_540 seg_542 seg_543 seg_617 seg_618 seg_619 seg_620 seg_544 seg_545 seg_546 seg_622 seg_623 seg_624 seg_625 seg_547 seg_548 seg_549 seg_626 seg_627 seg_628 seg_629 seg_550 seg_551 seg_552 seg_630 seg_631 seg_632 seg_633 seg_553 seg_554 seg_555 seg_634 seg_635 seg_637 seg_638 seg_556 seg_558 seg_559 seg_639 seg_641 seg_642 seg_644 seg_561 seg_562 seg_563 seg_645 seg_646 seg_647 seg_648 seg_564 seg_565 seg_566 seg_649 seg_650 seg_651 seg_652 seg_567 seg_568 seg_570 seg_654 seg_655 seg_656 seg_657 seg_572 seg_573 seg_574 seg_658 seg_659 seg_660 seg_661 seg_575 seg_576 seg_577 seg_662 seg_663 seg_664 seg_665 seg_578 seg_513 seg_519 seg_666 seg_565 seg_570 seg_573 seg_537 seg_541 seg_557 seg_614 seg_621 seg_636 seg_640 seg_569 seg_571 seg_560 seg_643 seg_598 seg_653 Muscular 313200 Xq11-q12 AR seg_296 seg_297 seg_298 seg_300 seg_285 seg_286 seg_287 seg_108 seg_109 atrophy/ seg_302 seg_305 seg_306 seg_307 seg_290 seg_291 seg_292 seg_110 seg_111 Dihydro- seg_308 seg_309 seg_310 seg_311 seg_294 seg_295 seg_296 seg_112 seg_113 testosterone seg_313 seg_314 seg_315 seg_316 seg_297 seg_295 seg_299 seg_114 seg_115 receptor seg_317 seg_318 seg_319 seg_320 seg_302 seg_303 seg_304 seg_116 seg_117 deficiency seg_321 seg_322 seq_323 seg_324 seg_305 seg_306 seg_307 seg_118 seg_119 seg_326 seg_328 seg_329 seg_330 seg_308 seg_309 seg_311 seg_121 seg_122 seg_331 seg_332 seg_334 seg_335 seg_312 seg_313 seg_288 seg_124 seg_125 seg_337 seg_338 seg_339 seg_340 seg_289 seg_293 seg_300 seg_120 seg_123 seg_341 seg_342 seg_344 seg_345 seg_301 seg_310 seg_295 seg_299 seg_301 seg_303 seg_304 seg_312 seg_325 seg_327 seg_333 seg_336 seg_343 Spinal 313200 Xq11-q12 AR seg_296 seg_297 seg_298 seg_300 seg_285 seg_286 seg_287 seg_108 seg_109 muscular seg_302 seg_305 seg_306 seg_307 seg_290 seg_291 seg_292 seg_110 seg_111 atrophy seg_308 seg_309 seg_310 seg_311 seg_294 seg_295 seg_296 seg_112 seg_113 seg_313 seg_314 seg_315 seg_316 seg_297 seg_298 seg_299 seg_114 seg_115 seg_317 seg_318 seg_319 seg_320 seg_302 seg_303 seg_304 seg_116 seg_117 seg_321 seg_322 seg_323 seg_324 seg_305 seg_306 seg_307 seg_118 seg_119 seg_326 seg_328 seg_329 seg_330 seg_308 seg_309 seg_311 seg_121 seg_122 seg_331 seg_332 seg_334 seg_335 seg_312 seg_313 seg_288 seg_124 seg_125 seg_337 seg_338 seg_339 seg_340 seg_289 seg_293 seg_300 seg_120 seg_123 seg_341 seg_342 seg_344 seg_345 seg_301 seg_310 seg_295 seg_299 seg_301 seg_303 seg_304 seg_312 seg_325 seg_327 seg_333 seg_336 seg_343 Spondyloepiphyseal 313400 Xp22.2-p22.1 SEDL seg_52 seg_53 seg_54 seg_55 seg_56 seg_56 seg_57 seg_58 seg_14 seg_16 seg_17 dysplasia tarda seg_57 seg_58 seg_59 seg_60 seg_61 seg_60 seg_61 seg_63 seg_18 seg_19 seg_20 seg_63 seg_64 seg_65 seg_66 seg_67 seg_64 seg_65 seg_66 seg_21 seg_22 seg_23 seg_68 seg_69 seg_70 seg_71 seg_73 seg_67 seg_68 seg_69 seg_24 seg_25 seg_26 seg_74 seg_75 seg_76 seg_77 seg_78 seg_70 seg_71 seg_72 seg_27 seg_28 seg_29 seg_79 seg_80 seg_81 seg_82 seg_S3 seg_73 seg_74 seg_75 seg_30 seg_31 seg_32 seg_84 seg_85 seg_86 seg_87 seg_88 seg_76 seg_77 seg_78 seg_33 seg_34 seg_35 seg_89 seg_90 seg_91 seg_92 seg_93 seg_79 seg_80 seg_81 seg_36 seg_37 seg_33 seg_94 seg_95 seg_96 seg_97 seg_98 seg_82 seg_83 seg_84 seg_39 seg_40 seg_41 seg_99 seg_100 seg_101 seg_102 seg_85 seg_86 seg_87 seg_42 seg_43 seg_44 seg_103 seg_104 seg_105 seg_106 seg_88 seg_89 seg_91 seg_45 seg_46 seg_47 seg_107 seg_108 seg_109 seg_62 seg_92 seg_93 seg_95 seg_48 seg_49 seg_50 seg_72 seg_96 seg_97 seg_98 seg_51 seg_52 seg_53 seg_99 seg_100 seg_101 seg_15 seg_102 seg_103 seg_104 seg_106 seg_107 seg_108 seg_110 seg_111 seg_112 seg_113 seg_114 seg_115 seg_117 seg_119 seg_120 seg_121 seg_122 seg_123 seg_124 seg_125 seg_126 seg_127 seg_128 seg_130 seg_131 seg_132 seg_133 seg_134 seg_135 seg_136 seg_137 seg_138 seg_139 seg_140 seg_141 seg_142 seg_143 seg_59 seg_62 seg_90 seg_94 seg_105 seg_109 seg_116 seg_118 seg_129 Thrombocytopenia, 313900 Xp11.23-p11.22 WAS seg_199 seg_201 seg_203 seg_204 seg_220 seg_221 seg_222 seg_96 seg_97 seg_98 hereditary seg_205 seg_206 seg_207 seg_208 seg_223 seg_224 seg_225 seg_99 seg_100 seg_209 seg_210 seg_211 seg_212 seg_226 seg_227 seg_228 seg_101 seg_102 seg_213 seg_214 seg_215 seg_216 seg_225 seg_230 seg_232 seg_103 seg_93 seg_217 seg_218 seg_219 seg_220 seg_234 seg_235 seg_236 seg_95 seg_221 seg_222 seg_223 seg_224 seg_237 seg_238 seg_239 seg_225 seg_226 seg_227 seg_228 seg_240 seg_241 seg_242 seg_229 seg_230 seg_231 seg_232 seg_243 seg_245 seg_246 seg_233 seg_234 seg_235 seg_236 seg_247 seg_248 seg_249 seg_237 seg_238 seg_239 seg_240 seg_250 seg_251 seg_252 seg_242 seg_243 seg_244 seg_245 seg_253 seg_254 seg_255 seg_246 seg_247 seg_249 seg_250 seg_256 seg_257 seg_258 seg_251 seg_252 seg_253 seg_254 seg_259 seg_260 seg_262 seg_256 seg_257 seg_258 seg_259 seg_263 seg_265 seg_266 seg_260 seg_261 seg_262 seg_263 seg_267 seg_268 seg_269 seg_264 seg_200 seg_202 seg_241 seg_270 seg_271 seg_231 seg_248 seg_255 seg_233 seg_244 seg_261 seg_264 Thyroxine- 314200 Xq22.2 TBG seg_382 seg_385 seg_386 seg_388 seg_326 seg_327 seg_328 seg_145 seg_146 binding seg_389 seg_391 seg_392 seg_393 seg_329 seg_331 seg_332 seg_148 seg_149 globulin, seg_394 seg_395 seg_396 seg_397 seg_333 seg_334 seg_336 seg_150 seg_152 absence seg_398 seg_399 seg_400 seg_401 seg_337 seg_338 seg_339 seg_156 seg_157 seg_402 seg_403 seg_404 seg_405 seg_340 seg_341 seg_342 seg_158 seg_159 seg_406 seg_407 seg_408 seg_409 seg_343 seg_344 seg_345 seg_160 seg_161 seg_410 seg_411 seg_412 seg_413 seg_346 seg_347 seg_348 seg_162 seg_163 seg_414 seg_415 seg_417 seg_418 seg_349 seg_350 seg_351 seg_147 seg_153 seg_419 seg_420 seg_421 seg_423 seg_352 seg_353 seg_355 seg_154 seg_155 seg_425 seg_426 seg_427 seg_428 seg_356 seg_357 seg_358 seg_151 seg_431 seg_432 seg_380 seg_383 seg_362 seg_363 seg_364 seg_387 seg_390 seg_416 seg_422 seg_365 seg_366 seg_367 seg_424 seg_429 seg_430 seg_384 seg_368 seg_369 seg_370 seg_371 seg_372 seg_373 seg_325 seg_330 seg_335 seg_354 seg_359 seg_360 seg_361 McLeod 314850 Xp21.1 XK seg_165 seg_166 seg_167 seg_168 seg_200 seg_201 seg_202 seg_79 seg_80 seg_81 syndrome seg_169 seg_170 seg_171 seg_172 seg_203 seg_204 seg_205 seg_82 seg_83 seg_84 seg_173 seg_174 seg_175 seg_176 seg_206 seg_207 seg_208 seg_85 seg_86 seg_87 seg_177 seg_178 seg_179 seg_181 seg_210 seg_211 seg_212 seg_88 seg_89 seg_90 seg_182 seg_183 seg_184 seg_185 seg_213 seg_214 seg_215 seg_91 seg_186 seg_187 seg_188 seg_189 seg_216 seg_217 seg_218 seg_191 seg_192 seg_193 seg_195 seg_209 seg_196 seg_180 seg_190 seg_194 *Strong human Suz12/PRC2 binding sites identified in K562 cells, see table XIV. **Strong human Ezh2/PRC2 binding sites identified in K562 cells, see table XIII. ***Strong human Ezh2/PRC2 binding sites identified in GM12878 cells, see table XV

Table A was adapted in part from Germain, “Chapter 7: General aspects of X-linked diseases” in Fabry Disease: Perspectives from 5 Years of FOS. Mehta A, Beck M, Sunder-Plassmann G, editors. (Oxford: Oxford PharmaGenesis; 2006).

Methods of Targeting Genes on Xi

The methods described herein can be used to specifically re-activate one or more genes on Xi, by targeting paRNAs or genomic DNA at strong and/or moderate binding sites as described herein, to disrupt RNA-mediated silencing in cis on the inactive X-chromosome.

The PRC2 site-associated RNAs can be noncoding (long noncoding RNA, lncRNA) or occasionally part of a coding mRNA; for simplicity, we will refer to them together as polycomb-associated RNAs (paRNAs) henceforth. The paRNAs described herein, including fragments thereof that are at least 20 nt in length, and inhibitory nucleic acids and small molecules targeting (e.g., complementary to) the paRNAs, or complementray or identical to a region within a strong or moderate binding site in the genome, can be used to modulate gene expression in a cell, e.g., a cancer cell, a stem cell, or other normal cell types for gene or epigenetic therapy. The nucleic acids used in the methods described herein are termed “inhibitory” because they inhibit the paRNA-mediated repression of a specified gene, either by binding to the paRNA itself (e.g., an antisense oligo that is complementary to the paRNA) or by binding to a strong or moderate PRC2 binding site as described herein (also termed an EZH2 or SUZ12 binding site herein) in the genome, and (without wishing to be bound by theory) preventing binding of the PRC2 complex and thus disrupting PRC2-mediated silencing in the region of the strong or moderate binding site. The inhibitory oligonucleotides that bind to a strong or moderate PRC2 binding site described herein can bind to either strand of the DNA, but preferably bind to the same strand to which the paRNA binds.

The cells can be in vitro, including ex vivo, or in vivo (e.g., in a subject who has cancer, e.g., a tumor). In some embodiments, the methods include introducing into the cell an inhibitory nucleic acid or a long non-coding RNA described herein that is modified in some way, e.g., an paRNA that differs from the endogenous paRNA by including one or more modifications to the backbone or bases as described herein for inhibitory nucleic acids. Such modified paRNAs are also within the scope of the present invention.

In some embodiments, the methods include introducing into the cell an inhibitory nucleic acid that specifically binds, or is complementary, to a strong or moderate binding site or a long non-coding RNA described herein. A nucleic acid that binds “specifically” binds primarily to the target, i.e., to the target DNA or paRNA or related paRNAs to inhibit regulatory function or binding of the paRNA but not of other non-target RNAs. The specificity of the nucleic acid interaction thus refers to its function (e.g., inhibiting the PRC2-associated repression of gene expression) rather than its hybridization capacity. Inhibitory nucleic acids may exhibit nonspecific binding to other sites in the genome or other mRNAs, without interfering with binding of other regulatory proteins and without causing degradation of the non-specifically-bound RNA. Thus this nonspecific binding does not significantly affect function of other non-target RNAs and results in no significant adverse effects. These methods can be used to treat an X-linked condition in a subject by administering to the subject a composition (e.g., as described herein) comprising an inhibitory nucleic acid that binds to a long non-coding RNA (e.g., an inhibitory nucleic acid that binds to a paRNA described herein) or to a strong or moderate PRC2 binding site that is associated with a disease gene. Examples of genes involved in X-linked diseases are shown in Table A.

As used herein, treating includes “prophylactic treatment” which means reducing the incidence of or preventing (or reducing risk of) a sign or symptom of a disease in a patient at risk for the disease, and “therapeutic treatment”, which means reducing signs or symptoms of a disease, reducing progression of a disease, reducing severity of a disease, in a patient diagnosed with the disease.

In some embodiments, the methods described herein include administering a composition, e.g., a sterile composition, comprising an inhibitory nucleic acid that is complementary to an paRNA described herein. Inhibitory nucleic acids for use in practicing the methods described herein can be an antisense or small interfering RNA, including but not limited to an shRNA or siRNA. In some embodiments, the inhibitory nucleic acid is a modified nucleic acid polymer (e.g., a locked nucleic acid (LNA) molecule).

Inhibitory nucleic acids have been employed as therapeutic moieties in the treatment of disease states in animals, including humans. Inhibitory nucleic acids can be useful therapeutic modalities that can be configured to be useful in treatment regimes for the treatment of cells, tissues and animals, especially humans.

For therapeutics, an animal, preferably a human, suspected of having cancer is treated by administering an paRNA or inhibitory nucleic acid in accordance with this invention. For example, in one non-limiting embodiment, the methods comprise the step of administering to the animal in need of treatment, a therapeutically effective amount of an paRNA or inhibitory nucleic acid as described herein.

Inhibitory Nucleic Acids

Inhibitory nucleic acids useful in the present methods and compositions include antisense oligonucleotides, ribozymes, external guide sequence (EGS) oligonucleotides, siRNA compounds, single- or double-stranded RNA interference (RNAi) compounds such as siRNA compounds, molecules comprising modified bases, locked nucleic acid molecules (LNA molecules), antagomirs, peptide nucleic acid molecules (PNA molecules), and other oligomeric compounds or oligonucleotide mimetics which hybridize to at least a portion of the target nucleic acid and modulate its function. In some embodiments, the inhibitory nucleic acids include antisense RNA, antisense DNA, chimeric antisense oligonucleotides, antisense oligonucleotides comprising modified linkages, interference RNA (RNAi), short interfering RNA (siRNA); a micro, interfering RNA (miRNA); a small, temporal RNA (stRNA); or a short, hairpin RNA (shRNA); small RNA-induced gene activation (RNAa); small activating RNAs (saRNAs), or combinations thereof. See, e.g., WO 2010040112.

However, in some embodiments the inhibitory nucleic acid is not an miRNA, an stRNA, an shRNA, an siRNA, an RNAi, or a dsRNA.

In some embodiments, the inhibitory nucleic acids are 10 to 50, 13 to 50, or 13 to 30 nucleotides in length. One having ordinary skill in the art will appreciate that this embodies oligonucleotides having antisense (complementary) portions of 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48, 49, or 50 nucleotides in length, or any range therewithin. It is understood that non-complementary bases may be included in such inhibitory nucleic acids; for example, an inhibitory nucleic acid 30 nucleotides in length may have a portion of 15 bases that is complementary to the targeted RNA. In some embodiments, the oligonucleotides are 15 nucleotides in length. In some embodiments, the antisense or oligonucleotide compounds of the invention are 12 or 13 to 30 nucleotides in length. One having ordinary skill in the art will appreciate that this embodies inhibitory nucleic acids having antisense (complementary) portions of 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29 or 30 nucleotides in length, or any range therewithin.

Preferably the inhibitory nucleic acid comprises one or more modifications comprising: a modified sugar moiety, and/or a modified internucleoside linkage, and/or a modified nucleotide and/or combinations thereof. It is not necessary for all positions in a given oligonucleotide to be uniformly modified, and in fact more than one of the modifications described herein may be incorporated in a single oligonucleotide or even at within a single nucleoside within an oligonucleotide.

In some embodiments, the inhibitory nucleic acids are chimeric oligonucleotides that contain two or more chemically distinct regions, each made up of at least one nucleotide. These oligonucleotides typically contain at least one region of modified nucleotides that confers one or more beneficial properties (such as, for example, increased nuclease resistance, increased uptake into cells, increased binding affinity for the target) and a region that is a substrate for enzymes capable of cleaving RNA:DNA or RNA:RNA hybrids. Chimeric inhibitory nucleic acids of the invention may be formed as composite structures of two or more oligonucleotides, modified oligonucleotides, oligonucleosides and/or oligonucleotide mimetics as described above. Such compounds have also been referred to in the art as hybrids or gapmers. Representative United States patents that teach the preparation of such hybrid structures comprise, but are not limited to, U.S. Pat. Nos. 5,013,830; 5,149,797; 5, 220,007; 5,256,775; 5,366,878; 5,403,711; 5,491,133; 5,565,350; 5,623,065; 5,652,355; 5,652,356; and 5,700,922, each of which is herein incorporated by reference.

In some embodiments, the inhibitory nucleic acid comprises at least one nucleotide modified at the 2′ position of the sugar, most preferably a 2′-O-alkyl, 2′-O-alkyl-O-alkyl or 2′-fluoro-modified nucleotide. In other preferred embodiments, RNA modifications include 2′-fluoro, 2′-amino and 2′ O-methyl modifications on the ribose of pyrimidines, abasic residues or an inverted base at the 3′ end of the RNA. Such modifications are routinely incorporated into oligonucleotides and these oligonucleotides have been shown to have a higher Tm (i.e., higher target binding affinity) than; 2′-deoxyoligonucleotides against a given target. A number of nucleotide and nucleoside modifications have been shown to make the oligonucleotide into which they are incorporated more resistant to nuclease digestion than the native oligodeoxynucleotide; these modified oligos survive intact for a longer time than unmodified oligonucleotides. Specific examples of modified oligonucleotides include those comprising modified backbones, for example, phosphorothioates, phosphotriesters, methyl phosphonates, short chain alkyl or cycloalkyl intersugar linkages or short chain heteroatomic or heterocyclic intersugar linkages. Most preferred are oligonucleotides with phosphorothioate backbones and those with heteroatom backbones, particularly CH₂—NH—O—CH₂, CH, ˜N(CH₃)˜O˜CH₂ (known as a methylene(methylimino) or MMI backbone], CH₂—O—N(CH₃)—CH₂, CH₂—N(CH₃)—N(CH₃)—CH₂ and O—N(CH₃)—CH₂—CH₂ backbones, wherein the native phosphodiester backbone is represented as O—P—O—CH,); amide backbones (see De Mesmaeker et al. Ace. Chem. Res. 1995, 28:366-374); morpholino backbone structures (see Summerton and Weller, U.S. Pat. No. 5,034,506); peptide nucleic acid (PNA) backbone (wherein the phosphodiester backbone of the oligonucleotide is replaced with a polyamide backbone, the nucleotides being bound directly or indirectly to the aza nitrogen atoms of the polyamide backbone, see Nielsen et al., Science 1991, 254, 1497). Phosphorus-containing linkages include, but are not limited to, phosphorothioates, chiral phosphorothioates, phosphorodithioates, phosphotriesters, aminoalkylphosphotriesters, methyl and other alkyl phosphonates comprising 3′alkylene phosphonates and chiral phosphonates, phosphinates, phosphoramidates comprising 3′-amino phosphoramidate and aminoalkylphosphoramidates, thionophosphoramidates, thionoalkylphosphonates, thionoalkylphosphotriesters, and boranophosphates having normal 3′-5′ linkages, 2′-5′ linked analogs of these, and those having inverted polarity wherein the adjacent pairs of nucleoside units are linked 3′-5′ to 5′-3′ or 2′-5′ to 5′-2′; see U.S. Pat. Nos. 3,687,808; 4,469,863; 4,476,301; 5,023,243; 5,177,196; 5,188,897; 5,264,423; 5,276,019; 5,278,302; 5,286,717; 5,321,131; 5,399,676; 5,405,939; 5,453,496; 5,455, 233; 5,466,677; 5,476,925; 5,519,126; 5,536,821; 5,541,306; 5,550,111; 5,563, 253; 5,571,799; 5,587,361; and 5,625,050.

Morpholino-based oligomeric compounds are described in Dwaine A. Braasch and David R. Corey, Biochemistry, 2002, 41(14), 4503-4510); Genesis, volume 30, issue 3, 2001; Heasman, J., Dev. Biol., 2002, 243, 209-214; Nasevicius et al., Nat. Genet., 2000, 26, 216-220; Lacerra et al., Proc. Natl. Acad. Sci., 2000, 97, 9591-9596; and U.S. Pat. No. 5,034,506, issued Jul. 23, 1991. In some embodiments, the morpholino-based oligomeric compound is a phosphorodiamidate morpholino oligomer (PMO) (e.g., as described in Iverson, Curr. Opin. Mol. Ther., 3:235-238, 2001; and Wang et al., J. Gene Med., 12:354-364, 2010; the disclosures of which are incorporated herein by reference in their entireties). Cyclohexenyl nucleic acid oligonucleotide mimetics are described in Wang et al., J. Am. Chem. Soc., 2000, 122, 8595-8602.

Modified oligonucleotide backbones that do not include a phosphorus atom therein have backbones that are formed by short chain alkyl or cycloalkyl internucleoside linkages, mixed heteroatom and alkyl or cycloalkyl internucleoside linkages, or one or more short chain heteroatomic or heterocyclic internucleoside linkages. These comprise those having morpholino linkages (formed in part from the sugar portion of a nucleoside); siloxane backbones; sulfide, sulfoxide and sulfone backbones; formacetyl and thioformacetyl backbones; methylene formacetyl and thioformacetyl backbones; alkene containing backbones; sulfamate backbones; methyleneimino and methylenehydrazino backbones; sulfonate and sulfonamide backbones; amide backbones; and others having mixed N, O, S and CH2 component parts; see U.S. Pat. Nos. 5,034,506; 5,166,315; 5,185,444; 5,214,134; 5,216,141; 5,235,033; 5,264, 562; 5,264,564; 5,405,938; 5,434,257; 5,466,677; 5,470,967; 5,489,677; 5,541,307; 5,561,225; 5,596, 086; 5,602,240; 5,610,289; 5,602,240; 5,608,046; 5,610,289; 5,618,704; 5,623,070; 5,663,312; 5,633,360; 5,677,437; and 5,677,439, each of which is herein incorporated by reference.

Modified oligonucleotides are also known that include oligonucleotides that are based on or constructed from arabinonucleotide or modified arabinonucleotide residues.

Arabinonucleosides are stereoisomers of ribonucleosides, differing only in the configuration at the 2′-position of the sugar ring. In some embodiments, a 2′-arabino modification is 2′-F arabino. In some embodiments, the modified oligonucleotide is 2′-fluoro-D-arabinonucleic acid (FANA) (as described in, for example, Lon et al., Biochem., 41:3457-3467, 2002 and Min et al., Bioorg. Med. Chem. Lett., 12:2651-2654, 2002; the disclosures of which are incorporated herein by reference in their entireties). Similar modifications can also be made at other positions on the sugar, particularly the 3′ position of the sugar on a 3′ terminal nucleoside or in 2′-5′ linked oligonucleotides and the 5′ position of 5′ terminal nucleotide.

PCT Publication No. WO 99/67378 discloses arabinonucleic acids (ANA) oligomers and their analogues for improved sequence specific inhibition of gene expression via association to complementary messenger RNA.

Other preferred modifications include ethylene-bridged nucleic acids (ENAs) (e.g., International Patent Publication No. WO 2005/042777, Morita et al., Nucleic Acid Res., Suppl 1:241-242, 2001; Surono et al., Hum. Gene Ther., 15:749-757, 2004; Koizumi, Curr. Opin. Mol. Ther., 8:144-149, 2006 and Horie et al., Nucleic Acids Symp. Ser (Oxf), 49:171-172, 2005; the disclosures of which are incorporated herein by reference in their entireties). Preferred ENAs include, but are not limited to, 2′-O,4′-C-ethylene-bridged nucleic acids. Examples of LNAs are described in WO 2008/043753 and WO2007031091 and include compounds of the following formula.

where X and Y are independently selected among the groups —O—, —S—, —N(H)—, N(R)—, —CH2- or —CH— (if part of a double bond), —CH₂—O—, —CH₂—S—, —CH₂—N(H)—, —CH₂—N(R)—, —CH₂—CH₂— or —CH₂—CH— (if part of a double bond), —CH═CH—, where R is selected from hydrogen and C₁₋₄-alkyl; Z and Z* are independently selected among an internucleoside linkage, a terminal group or a protecting group; B constitutes a natural or non-natural nucleotide base moiety; and the asymmetric groups may be found in either orientation.

Preferably, the LNA used in the oligomer of the invention comprises at least one LNA unit according any of the formulas

wherein Y is —O—, —S—, —NH—, or N(R^(H)); Z and Z* are independently selected among an internucleoside linkage, a terminal group or a protecting group: B constitutes a natural or non-natural nucleotide base moiety, and RH is selected from hydrogen and C₁₋₄-alkyl.

Preferably, the Locked Nucleic Acid (LNA) used in an oligomeric compound, such as an antisense oligonucleotide, as described herein comprises at least one nucleotide comprises a Locked Nucleic Acid (LNA) unit according any of the formulas shown in Scheme 2 of PCT/DK2006/000512 (WO2007031091).

Preferably, the LNA used in the oligomer of the invention comprises internucleoside linkages selected from -0-P(O)₂—O—, —O—P(O,S)—O—, —O—P(S)₂—O—, —S—P(O)₂—O—, —S—P(O,S)—O—, —S—P(S)₂—O—, -0-P(O)₂—S—, —O—P(O,S)—S—, —S—P(O)₂—S—, —O—PO(R_(H))—O—, —O—PO(OCH₃)—O—, —O—PO(NR^(H))—O—, -0-PO(OCH₂CH₂S—R)—O—, —O—PO(BH₃)—O—, —O—PO(NHR^(H))—O—, —O—P(O)₂—NR^(H)—, —NR^(H)—P(O)₂—O—, —NR^(H)—CO—O—, where R^(H) is selected from hydrogen and C₁₋₄-alkyl.

Specifically preferred LNA units are shown in scheme 3:

The term “thio-LNA” comprises a locked nucleotide in which at least one of X or Y in the general formula above is selected from S or —CH2-S—. Thio-LNA can be in both beta-D and alpha-L-configuration.

The term “amino-LNA” comprises a locked nucleotide in which at least one of X or Y in the general formula above is selected from —N(H)—, N(R)—, CH₂—N(H)—, and —CH, —N(R)— where R is selected from hydrogen and C₁₋₄-alkyl. Amino-LNA can be in both beta-D and alpha-L-configuration.

The term “oxy-LNA” comprises a locked nucleotide in which at least one of X or Y in the general formula above represents —O— or —CH₂—O—. Oxy-LNA can be in both beta-D and alpha-L-configuration.

The term “ena-LNA” comprises a locked nucleotide in which Y in the general formula above is —CH₂—O— (where the oxygen atom of —CH₂—O— is attached to the 2′-position relative to the base B).

LNAs are described in additional detail below. One or more substituted sugar moieties can also be included, e.g., one of the following at the 2′ position: OH, SH, SCH₃, F, OCN, OCH₃ OCH₃, OCH₃O(CH₂)n CH₃, O(CH₂)n NH₂ or O(CH₂)n CH₃ where n is from 1 to about 10; Ci to C10 lower alkyl, alkoxyalkoxy, substituted lower alkyl, alkaryl or aralkyl; Cl; Br; CN; CF3; OCF3; O-, S-, or N-alkyl; O-, S-, or N-alkenyl; SOCH3; SO2 CH3; ONO2; NO2; N3; NH2; heterocycloalkyl; heterocycloalkaryl; aminoalkylamino; polyalkylamino; substituted silyl; an RNA cleaving group; a reporter group; an intercalator; a group for improving the pharmacokinetic properties of an oligonucleotide; or a group for improving the pharmacodynamic properties of an oligonucleotide and other substituents having similar properties. A preferred modification includes 2′-methoxyethoxy [2′-0-CH₂CH₂OCH₃, also known as 2′-O-(2-methoxyethyl)](Martin et al, HeIv. Chim. Acta, 1995, 78, 486). Other preferred modifications include 2′-methoxy (2′-0-CH₃), 2′-propoxy (2′-OCH₂CH₂CH₃) and 2′-fluoro (2′-F). Similar modifications may also be made at other positions on the oligonucleotide, particularly the 3′ position of the sugar on the 3′ terminal nucleotide and the 5′ position of 5′ terminal nucleotide. Oligonucleotides may also have sugar mimetics such as cyclobutyls in place of the pentofuranosyl group.

Inhibitory nucleic acids can also include, additionally or alternatively, nucleobase (often referred to in the art simply as “base”) modifications or substitutions. As used herein, “unmodified” or “natural” nucleobases include adenine (A), guanine (G), thymine (T), cytosine (C) and uracil (U). Modified nucleobases include nucleobases found only infrequently or transiently in natural nucleic acids, e.g., hypoxanthine, 6-methyladenine, 5-Me pyrimidines, particularly 5-methylcytosine (also referred to as 5-methyl-2′ deoxycytosine and often referred to in the art as 5-Me-C), 5-hydroxymethylcytosine (HMC), glycosyl HMC and gentobiosyl HMC, isocytosine, pseudoisocytosine, as well as synthetic nucleobases, e.g., 2-aminoadenine, 2-(methylamino)adenine, 2-(imidazolylalkyl)adenine, 2-(aminoalklyamino)adenine or other heterosubstituted alkyladenines, 2-thiouracil, 2-thiothymine, 5-bromouracil, 5-hydroxymethyluracil, 5-propynyluracil, 8-azaguanine, 7-deazaguanine, N6 (6-aminohexyl)adenine, 6-aminopurine, 2-aminopurine, 2-chloro-6-aminopurine and 2,6-diaminopurine or other diaminopurines. See, e.g., Kornberg, “DNA Replication,” W. H. Freeman & Co., San Francisco, 1980, pp 75-77; and Gebeyehu, G., et al. Nucl. Acids Res., 15:4513 (1987)). A “universal” base known in the art, e.g., inosine, can also be included. 5-Me-C substitutions have been shown to increase nucleic acid duplex stability by 0.6-1.2<0>C. (Sanghvi, in Crooke, and Lebleu, eds., Antisense Research and Applications, CRC Press, Boca Raton, 1993, pp. 276-278) and are presently preferred base substitutions.

It is not necessary for all positions in a given oligonucleotide to be uniformly modified, and in fact more than one of the modifications described herein may be incorporated in a single oligonucleotide or even at within a single nucleoside within an oligonucleotide.

In some embodiments, both a sugar and an internucleoside linkage, i.e., the backbone, of the as nucleotide units are replaced with novel groups. The base units are maintained for hybridization with an appropriate nucleic acid target compound. One such oligomeric compound, an oligonucleotide mimetic that has been shown to have excellent hybridization properties, is referred to as a peptide nucleic acid (PNA). In PNA compounds, the sugar-backbone of an oligonucleotide is replaced with an amide containing backbone, for example, an aminoethylglycine backbone. The nucleobases are retained and are bound directly or indirectly to aza nitrogen atoms of the amide portion of the backbone. Representative United States patents that teach the preparation of PNA compounds include, but are not limited to, U.S. Pat. Nos. 5,539,082; 5,714,331; and 5,719,262, each of which is herein incorporated by reference. Further teaching of PNA compounds can be found in Nielsen et al, Science, 1991, 254, 1497-1500.

Inhibitory nucleic acids can also include one or more nucleobase (often referred to in the art simply as “base”) modifications or substitutions. As used herein, “unmodified” or “natural” nucleobases comprise the purine bases adenine (A) and guanine (G), and the pyrimidine bases thymine (T), cytosine (C) and uracil (U). Modified nucleobases comprise other synthetic and natural nucleobases such as 5-methylcytosine (5-me-C), 5-hydroxymethyl cytosine, xanthine, hypoxanthine, 2-aminoadenine, 6-methyl and other alkyl derivatives of adenine and guanine, 2-propyl and other alkyl derivatives of adenine and guanine, 2-thiouracil, 2-thiothymine and 2-thiocytosine, 5-halouracil and cytosine, 5-propynyl uracil and cytosine, 6-azo uracil, cytosine and thymine, 5-uracil (pseudo-uracil), 4-thiouracil, 8-halo, 8-amino, 8-thiol, 8-thioalkyl, 8-hydroxyl and other 8-substituted adenines and guanines, 5-halo particularly 5-bromo, 5-trifluoromethyl and other 5-substituted uracils and cytosines, 7-methylquanine and 7-methyladenine, 8-azaguanine and 8-azaadenine, 7-deazaguanine and 7-deazaadenine and 3-deazaguanine and 3-deazaadenine.

Further, nucleobases comprise those disclosed in U.S. Pat. No. 3,687,808, those disclosed in “The Concise Encyclopedia of Polymer Science And Engineering”, pages 858-859, Kroschwitz, ed. John Wiley & Sons, 1990; those disclosed by Englisch et al., Angewandle Chemie, International Edition, 1991, 30, page 613, and those disclosed by Sanghvi, Chapter 15, Antisense Research and Applications,” pages 289-302, Crooke, and Lebleu, eds., CRC Press, 1993. Certain of these nucleobases are particularly useful for increasing the binding affinity of the oligomeric compounds of the invention. These include 5-substituted pyrimidines, 6-azapyrimidines and N-2, N-6 and 0-6 substituted purines, comprising 2-aminopropyladenine, 5-propynyluracil and 5-propynylcytosine. 5-methylcytosine substitutions have been shown to increase nucleic acid duplex stability by 0.6-1.2° C. (Sanghvi, et al., eds, “Antisense Research and Applications,” CRC Press, Boca Raton, 1993, pp. 276-278) and are presently preferred base substitutions, even more particularly when combined with 2′-O-methoxyethyl sugar modifications. Modified nucleobases are described in U.S. Pat. Nos. 3,687,808, as well as U.S. Pat. Nos. 4,845,205; 5,130,302; 5,134,066; 5,175,273; 5,367,066; 5,432,272; 5,457,187: 5,459,255; 5,484,908; 5,502,177; 5,525,711; 5,552,540; 5,587,469; 5,596,091; 5,614,617; 5,750,692, and 5,681,941, each of which is herein incorporated by reference.

In some embodiments, the inhibitory nucleic acids are chemically linked to one or more moieties or conjugates that enhance the activity, cellular distribution, or cellular uptake of the oligonucleotide. For example, one or more inhibitory nucleic acids, of the same or different types, can be conjugated to each other; or inhibitory nucleic acids can be conjugated to targeting moieties with enhanced specificity for a cell type or tissue type. Such moieties include, but are not limited to, lipid moieties such as a cholesterol moiety (Letsinger et al., Proc. Natl. Acad. Sci. USA, 1989, 86, 6553-6556), cholic acid (Manoharan et al., Bioorg. Med. Chem. Let., 1994, 4, 1053-1060), a thioether, e.g., hexyl-S-tritylthiol (Manoharan et al, Ann. N. Y. Acad. Sci., 1992, 660, 306-309; Manoharan et al., Bioorg. Med. Chem. Let., 1993, 3, 2765-2770), a thiocholesterol (Oberhauser et al., Nucl. Acids Res., 1992, 20, 533-538), an aliphatic chain, e.g., dodecandiol or undecyl residues (Kabanov et al., FEBS Lett., 1990, 259, 327-330; Svinarchuk et al., Biochimie, 1993, 75, 49-54), a phospholipid, e.g., di-hexadecyl-rac-glycerol or triethylammonium 1,2-di-O-hexadecyl-rac-glycero-3-H-phosphonate (Manoharan et al., Tetrahedron Lett., 1995. 36, 3651-3654; Shea et al., Nucl. Acids Res., 1990, 18, 3777-3783), a polyamine or a polyethylene glycol chain (Mancharan et al., Nucleosides & Nucleotides, 1995, 14, 969-973), or adamantane acetic acid (Manoharan et al., Tetrahedron Lett., 1995, 36, 3651-3654), a palmityl moiety (Mishra et al., Biochim. Biophys. Acta, 1995, 1264, 229-237), or an octadecylamine or hexylamino-carbonyl-t oxycholesterol moiety (Crooke et al., J. Pharmacol. Exp. Ther., 1996, 277, 923-937). See also U.S. Pat. Nos. 4,828,979; 4,948,882; 5,218,105; 5,525,465; 5,541,313; 5,545,730; 5,552, 538; 5,578,717, 5,580,731; 5,580,731; 5,591,584; 5,109,124; 5,118,802; 5,138,045; 5,414,077; 5,486,603; 5,512,439; 5,578,718; 5,608,046; 4,587,044; 4,605,735; 4,667,025; 4,762,779; 4,789,737; 4,824,941; 4,835,263; 4,876,335; 4,904,582; 4,958,013; 5,082, 830; 5,112,963; 5,214,136; 5,082,830; 5,112,963; 5,214,136; 5,245,022; 5,254,469; 5,258,506; 5,262,536; 5,272,250; 5,292,873; 5,317,098; 5,371,241, 5,391,723: 5,416,203, 5,451,463; 5,510,475; 5,512,667; 5,514,785; 5,565,552; 5,567,810; 5,574,142; 5,585,481; 5,587,371; 5,595,726; 5,597,696; 5,599,923; 5,599,928 and 5,688,941, each of which is herein incorporated by reference.

These moieties or conjugates can include conjugate groups covalently bound to functional groups such as primary or secondary hydroxyl groups. Conjugate groups of the invention include intercalators, reporter molecules, polyamines, polyamides, polyethylene glycols, polyethers, groups that enhance the pharmacodynamic properties of oligomers, and groups that enhance the pharmacokinetic properties of oligomers. Typical conjugate groups include cholesterols, lipids, phospholipids, biotin, phenazine, folate, phenanthridine, anthraquinone, acridine, fluoresceins, rhodamines, coumarins, and dyes. Groups that enhance the pharmacodynamic properties, in the context of this invention, include groups that improve uptake, enhance resistance to degradation, and/or strengthen sequence-specific hybridization with the target nucleic acid. Groups that enhance the pharmacokinetic properties, in the context of this invention, include groups that improve uptake, distribution, metabolism or excretion of the compounds of the present invention. Representative conjugate groups are disclosed in International Patent Application No. PCT/US92/09196, filed Oct. 23, 1992, and U.S. Pat. No. 6,287,860, which are incorporated herein by reference. Conjugate moieties include, but are not limited to, lipid moieties such as a cholesterol moiety, cholic acid, a thioether, e.g., hexyl-5-tritylthiol, a thiocholesterol, an aliphatic chain, e.g., dodecandiol or undecyl residues, a phospholipid, e.g., di-hexadecyl-rac-glycerol or triethylammonium 1,2-di-O-hexadecyl-rac-glycero-3-H-phosphonate, a polyamine or a polyethylene glycol chain, or adamantane acetic acid, a palmityl moiety, or an octadecylamine or hexylamino-carbonyl-oxy cholesterol moiety. See, e.g., U.S. Pat. Nos. 4,828,979; 4,948,882; 5,218,105; 5,525,465; 5,541,313; 5,545,730; 5,552,538; 5,578,717, 5,580,731; 5,580,731; 5,591,584; 5,109,124; 5,118,802; 5,138,045; 5,414,077; 5,486,603; 5,512,439; 5,578,718; 5,608,046; 4,587,044; 4,605,735; 4,667,025; 4,762,779; 4,789,737; 4,824,941; 4,835,263; 4,876,335; 4,904,582; 4,958,013; 5,082,830; 5,112,963; 5,214,136; 5,082,830; 5,112,963; 5,214,136; 5,245,022; 5,254,469; 5,258,506; 5,262,536; 5,272,250; 5,292,873; 5,317,098; 5,371,241, 5,391,723; 5,416,203, 5,451,463; 5,510,475; 5,512,667; 5,514,785; 5,565,552; 5,567,810; 5,574,142; 5,585,481; 5,587,371; 5,595,726; 5,597,696; 5,599,923; 5,599,928 and 5,688,941.

The inhibitory nucleic acids useful in the present methods are sufficiently complementary to the target paRNA, e.g., hybridize sufficiently well and with sufficient biological functional specificity, to give the desired effect. “Complementary” refers to the capacity for pairing, through base stacking and specific hydrogen bonding, between two sequences comprising naturally or non-naturally occurring (e.g., modified as described above) bases (nucleosides) or analogs thereof. For example, if a base at one position of an inhibitory nucleic acid is capable of hydrogen bonding with a base at the corresponding position of a paRNA, then the bases are considered to be complementary to each other at that position. 100% complementarity is not required. As noted above, inhibitory nucleic acids can comprise universal bases, or inert abasic spacers that provide no positive or negative contribution to hydrogen bonding. Base pairings may include both canonical Watson-Crick base pairing and non-Watson-Crick base pairing (e.g., Wobble base pairing and Hoogsteen base pairing). It is understood that for complementary base pairings, adenosine-type bases (A) are complementary to thymidine-type bases (T) or uracil-type bases (U), that cytosine-type bases (C) are complementary to guanosine-type bases (G), and that universal bases such as such as 3-nitropyrrole or 5-nitroindole can hybridize to and are considered complementary to any A, C, U, or T. Nichols et al., Nature, 1994; 369:492-493 and Loakes et al., Nucleic Acids Res., 1994; 22:4039-4043. Inosine (I) has also been considered in the art to be a universal base and is considered complementary to any A, C, U, or T. See Watkins and SantaLucia, Nucl. Acids Research, 2005; 33 (19): 6258-6267.

In some embodiments, the location on a target paRNA to which an inhibitory nucleic acid hybridizes is a region to which a protein binding partner binds, as identified in Tables VI or VII. The identification of these strong or moderate binding sites, is described in Example 8 below. Routine methods can be used to design an inhibitory nucleic acid that binds to a selected strong or moderate binding site sequence with sufficient specificity. In some embodiments, the methods include using bioinformatics methods known in the art to identify regions of secondary structure, e.g., one, two, or more stem-loop structures, or pseudoknots, and selecting those regions to target with an inhibitory nucleic acid. For example, methods of designing oligonucleotides similar to the inhibitory nucleic acids described herein, and various options for modified chemistries or formats, are exemplified in Lennox and Behlke, Gene Therapy (2011) 18: 1111-1120, which is incorporated herein by reference in its entirety, with the understanding that the inhibitory oligonucleotides of the present disclosure do not target miRNA ‘seed regions’.

While the specific sequences of certain exemplary target segments are set forth herein, one of skill in the art will recognize that these serve to illustrate and describe particular embodiments within the scope of the present invention. Additional target segments are readily identifiable by one having ordinary skill in the art in view of this disclosure. Target segments 5-500 nucleotides in length comprising a stretch of at least five (5) consecutive nucleotides within the protein binding region, or immediately adjacent thereto, are considered to be suitable for targeting as well. Target segments can include sequences that comprise at least the 5 consecutive nucleotides from the 5′-terminus of one of the protein binding regions (the remaining nucleotides being a consecutive stretch of the same RNA beginning immediately upstream of the 5′-terminus of the binding segment and continuing until the inhibitory nucleic acid contains about 5 to about 100 nucleotides). Similarly preferred target segments are represented by RNA sequences that comprise at least the 5 consecutive nucleotides from the 3′-terminus of one of the illustrative preferred target segments (the remaining nucleotides being a consecutive stretch of the same paRNA beginning immediately downstream of the 3′-terminus of the target segment and continuing until the inhibitory nucleic acid contains about 5 to about 100 nucleotides). One having skill in the art armed with the sequences provided herein will be able, without undue experimentation, to identify further preferred protein binding regions to target with complementary inhibitory nucleic acids.

In the context of the present disclosure, hybridization means base stacking and hydrogen bonding, which may be Watson-Crick, Hoogsteen or reversed Hoogsteen hydrogen bonding, between complementary nucleoside or nucleotide bases. For example, adenine and thymine are complementary nucleobases which pair through the formation of hydrogen bonds. Complementary, as the term is used in the art, refers to the capacity for precise pairing between two nucleotides. For example, if a nucleotide at a certain position of an oligonucleotide is capable of hydrogen bonding with a nucleotide at the same position of a paRNA molecule, then the inhibitory nucleic acid and the paRNA are considered to be complementary to each other at that position. The inhibitory nucleic acids and the paRNA are complementary to each other when a sufficient number of corresponding positions in each molecule are occupied by nucleotides that can hydrogen bond with each other through their bases. Thus, “specifically hybridizable” and “complementary” are terms which are used to indicate a sufficient degree of complementarity or precise pairing such that stable and specific binding occurs between the inhibitory nucleic acid and the paRNA target. For example, if a base at one position of an inhibitory nucleic acid is capable of hydrogen bonding with a base at the corresponding position of a paRNA, then the bases are considered to be complementary to each other at that position. 100% complementarity is not required.

It is understood in the art that a complementary nucleic acid sequence need not be 100% complementary to that of its target nucleic acid to be specifically hybridizable. A complementary nucleic acid sequence for purposes of the present methods is specifically hybridizable when binding of the sequence to the target paRNA molecule interferes with the normal function of the target paRNA to cause a loss of activity (e.g., inhibiting PRC2-associated repression with consequent up-regulation of gene expression) and there is a sufficient degree of complementarity to avoid non-specific binding of the sequence to non-target paRNA sequences under conditions in which avoidance of the non-specific binding is desired, e.g., under physiological conditions in the case of in vivo assays or therapeutic treatment, and in the case of in vitro assays, under conditions in which the assays are performed under suitable conditions of stringency. For example, stringent salt concentration will ordinarily be less than about 750 mM NaCl and 75 mM trisodium citrate, preferably less than about 500 mM NaCl and 50 mM trisodium citrate, and more preferably less than about 250 mM NaCl and 25 mM trisodium citrate. Low stringency hybridization can be obtained in the absence of organic solvent, e.g., formamide, while high stringency hybridization can be obtained in the presence of at least about 35% formamide, and more preferably at least about 50% formamide. Stringent temperature conditions will ordinarily include temperatures of at least about 30° C., more preferably of at least about 37° C., and most preferably of at least about 42° C. Varying additional parameters, such as hybridization time, the concentration of detergent, e.g., sodium dodecyl sulfate (SDS), and the inclusion or exclusion of carrier DNA, are well known to those skilled in the art. Various levels of stringency are accomplished by combining these various conditions as needed. In a preferred embodiment, hybridization will occur at 30° C. in 750 mM NaCl, 75 mM trisodium citrate, and 1% SDS. In a more preferred embodiment, hybridization will occur at 37° C. in 500 mM NaCl, 50 mM trisodium citrate, 1% SDS, 35% formamide, and 100 μg/ml denatured salmon sperm DNA (ssDNA). In a most preferred embodiment, hybridization will occur at 42° C. in 250 mM NaCl, 25 mM trisodium citrate, 1% SDS, 50% formamide, and 200 μg/ml ssDNA. Useful variations on these conditions will be readily apparent to those skilled in the art.

For most applications, washing steps that follow hybridization will also vary in stringency. Wash stringency conditions can be defined by salt concentration and by temperature. As above, wash stringency can be increased by decreasing salt concentration or by increasing temperature. For example, stringent salt concentration for the wash steps will preferably be less than about 30 mM NaCl and 3 mM trisodium citrate, and most preferably less than about 15 mM NaCl and 1.5 mM trisodium citrate. Stringent temperature conditions for the wash steps will ordinarily include a temperature of at least about 25° C., more preferably of at least about 42° C., and even more preferably of at least about 68° C. In a preferred embodiment, wash steps will occur at 25° C. in 30 mM NaCl, 3 mM trisodium citrate, and 0.1% SDS. In a more preferred embodiment, wash steps will occur at 42° C. in 15 mM NaCl, 1.5 mM trisodium citrate, and 0.1% SDS. In a more preferred embodiment, wash steps will occur at 68° C. in 15 mM NaCl, 1.5 mM trisodium citrate, and 0.1% SDS. Additional variations on these conditions will be readily apparent to those skilled in the art. Hybridization techniques are well known to those skilled in the art and are described, for example, in Benton and Davis (Science 196:180, 1977); Grunstein and Hogness (Proc. Natl. Acad. Sci., USA 72:3961, 1975); Ausubel et al. (Current Protocols in Molecular Biology, Wiley Interscience, New York, 2001); Berger and Kimmel (Guide to Molecular Cloning Techniques, 1987, Academic Press, New York); and Sambrook et al., Molecular Cloning: A Laboratory Manual, Cold Spring Harbor Laboratory Press, New York.

In general, the inhibitory nucleic acids useful in the methods described herein have at least 80% sequence complementarity to a target region within the target nucleic acid, e.g., 90%, 95%, or 100% sequence complementarity to the target region within an paRNA. For example, an antisense compound in which 18 of 20 nucleobases of the antisense oligonucleotide are complementary, and would therefore specifically hybridize, to a target region would represent 90 percent complementarity. Percent complementarity of an inhibitory nucleic acid with a region of a target nucleic acid can be determined routinely using basic local alignment search tools (BLAST programs) (Altschul et al., J. Mol. Biol., 1990, 215, 403-410; Zhang and Madden, Genome Res., 1997, 7, 649-656). Antisense and other compounds of the invention that hybridize to an paRNA are identified through routine experimentation. In general the inhibitory nucleic acids must retain specificity for their target, i.e., either do not directly bind to, or do not directly significantly affect expression levels of, transcripts other than the intended target.

Target-specific effects, with corresponding target-specific functional biological effects, are possible even when the inhibitory nucleic acid exhibits non-specific binding to a large number of non-target RNAs. For example, short 8 base long inhibitory nucleic acids that are fully complementary to a paRNA may have multiple 100% matches to hundreds of sequences in the genome, yet may produce target-specific effects, e.g. upregulation of a specific target gene through inhibition of PRC2 activity. 8-base inhibitory nucleic acids have been reported to prevent exon skipping with with a high degree of specificity and reduced off-target effect.

See Singh et al., RNA Biol., 2009; 6(3): 341-350. 8-base inhibitory nucleic acids have been reported to interfere with miRNA activity without significant off-target effects. See Obad et al., Nature Genetics, 2011; 43: 371-378.

For further disclosure regarding inhibitory nucleic acids, please see US2010/0317718 (antisense oligos); US2010/0249052 (double-stranded ribonucleic acid (dsRNA));

US2009/0181914 and US2010/0234451 (LNA molecules); US2007/0191294 (siRNA analogues); US2008/0249039 (modified siRNA); and WO2010/129746 and WO2010/040112 (inhibitory nucleic acids).

Antisense

In some embodiments, the inhibitory nucleic acids are antisense oligonucleotides. Antisense oligonucleotides are typically designed to block expression of a DNA or RNA target by binding to the target and halting expression at the level of transcription, translation, or splicing. Antisense oligonucleotides of the present invention are complementary nucleic acid sequences designed to hybridize under stringent conditions to an paRNA in vitro, and are expected to inhibit the activity of PRC2 in vivo. Thus, oligonucleotides are chosen that are sufficiently complementary to the target, i.e., that hybridize sufficiently well and with sufficient biological functional specificity, to give the desired effect.

Modified Bases, Including Locked Nucleic Acids (LNAs)

In some embodiments, the inhibitory nucleic acids used in the methods described herein comprise one or more modified bonds or bases. Modified bases include phosphorothioate, methylphosphonate, peptide nucleic acids, or locked nucleic acids (LNAs). Preferably, the modified nucleotides are part of locked nucleic acid molecules, including [alpha]-L-LNAs. LNAs include ribonucleic acid analogues wherein the ribose ring is “locked” by a methylene bridge between the 2′-oxgygen and the 4′-carbon—i.e., oligonucleotides containing at least one LNA monomer, that is, one 2′-O,4′-C-methylene-β-D-ribofuranosyl nucleotide. LNA bases form standard Watson-Crick base pairs but the locked configuration increases the rate and stability of the basepairing reaction (Jepsen et al., Oligonucleotides, 14, 130-146 (2004)). LNAs also have increased affinity to base pair with RNA as compared to DNA. These properties render LNAs especially useful as probes for fluorescence in situ hybridization (FISH) and comparative genomic hybridization, as knockdown tools for miRNAs, and as antisense oligonucleotides to target mRNAs or other RNAs, e.g., paRNAs as described herein.

The modified base/LNA molecules can include molecules comprising, e.g., 10-30, e.g., 12-24, e.g., 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, or 30 nucleotides in each strand, wherein one of the strands is substantially identical, e.g., at least 80% (or more, e.g., 85%, 90%, 95%, or 100%) identical, e.g., having 3, 2, 1, or 0 mismatched nucleotide(s), to a target region in the paRNA. The modified base/LNA molecules can be chemically synthesized using methods known in the art.

The modified base/LNA molecules can be designed using any method known in the art; a number of algorithms are known, and are commercially available (e.g., on the internet, for example at exiqon.com). See, e.g., You et al., Nuc. Acids. Res. 34:e60 (2006); McTigue et al., Biochemistry 43:5388-405 (2004); and Levin et al., Nuc. Acids. Res. 34:e142 (2006). For example, “gene walk” methods, similar to those used to design antisense oligos, can be used to optimize the inhibitory activity of a modified base/LNA molecule; for example, a series of oligonucleotides of 10-30 nucleotides spanning the length of a target paRNA can be prepared, followed by testing for activity. Optionally, gaps, e.g., of 5-10 nucleotides or more, can be left between the LNAs to reduce the number of oligonucleotides synthesized and tested. GC content is preferably between about 30-60%. General guidelines for designing modified base/LNA molecules are known in the art; for example, LNA sequences will bind very tightly to other LNA sequences, so it is preferable to avoid significant complementarity within an LNA molecule. Contiguous runs of three or more Gs or Cs, or more than four LNA residues, should be avoided where possible (for example, it may not be possible with very short (e.g., about 9-10 nt) oligonucleotides). In some embodiments, the LNAs are xylo-LNAs.

In some embodiments, the modified base/LNA molecules can be designed to target a specific region of the paRNA. For example, a specific functional region can be targeted, e.g., a region comprising a known RNA localization motif (i.e., a region complementary to the target nucleic acid on which the paRNA acts), or a region comprising a known protein binding region, e.g., a Polycomb (e.g., Polycomb Repressive Complex 2 (PRC2), comprised of H3K27 methylase EZH2, SUZI2, and EED)) or LSD1/CoREST/REST complex binding region (see, e.g., Tsai et al., Science. 2010 Aug. 6; 329(5992):689-93. Epub 2010 Jul. 8; and Zhao et al., Science. 2008 Oct. 31; 322(5902):750-6). Sarma et al., “Locked nucleic acids (LNAs) reveal sequence requirements and kinetics of Xist RNA localization to the X chromosome.” PNAS published ahead of print Dec. 6, 2010, doi:10.1073/pnas.1009785107. Alternatively or in addition, highly conserved regions can be targeted, e.g., regions identified by aligning sequences from disparate species such as primate (e.g., human) and rodent (e.g., mouse) and looking for regions with high degrees of identity. Percent identity can be determined routinely using basic local alignment search tools (BLAST programs) (Altschul et al., J. Mol. Biol., 1990, 215, 403-410; Zhang and Madden, Genome Res., 1997, 7, 649-656), e.g., using the default parameters.

For additional information regarding LNA molecules see U.S. Pat. Nos. 6,268,490; 6,734,291; 6,770,748; 6,794,499; 7,034,133; 7,053,207; 7,060,809; 7,084,125; and 7,572,582; and U.S. Pre-Grant Pub. Nos. 20100267018; 20100261175; and 20100035968; Koshkin et al. Tetrahedron 54, 3607-3630 (1998); Obika et al. Tetrahedron Lett. 39, 5401-5404 (1998); Jepsen et al., Oligonucleotides 14:130-146 (2004); Kauppinen et al., Drug Disc. Today 2(3):287-290 (2005); and Ponting et al., Cell 136(4):629-641 (2009), and references cited therein.

In a related aspect, the present disclosure demonstrates the ability of LNA molecules to displace a cis-acting nuclear long ncRNA with fast kinetics (e.g., RNA/PRC2 disassociation from the chromosome after 2, 5, 10 seconds up to 60 minutes as described herein)—a property that enables the modification and study of the function of long ncRNAs in ways not previously possible. Using 17 kb Xist RNA as a model, the present inventors showed that LNA molecules designed to specifically target the transcript leads to extremely rapid displacement of the RNA from the inactive X chromosome. Interestingly, while the RNA is displaced, transcript stability is not affected. Targeting different Xist regions has allowed the identification of a localization domain and show that Polycomb repressive complex 2 (PRC2) is displaced together with Xist. Thus, PRC2 depends on RNA for both initial targeting to and stable association with chromatin. Time-course analysis of RNA relocalization suggests that Xist and PRC2 spread along X at the same time but does not reach saturating levels for 24 hours, providing a window of opportunity to reprogram the chromatin, if necessary. It is remarkable that targeting a small region within a 17-kb RNA could produce such dramatic effects. The rapid effects suggest that the Xist RNA-protein complex may be anchored to the inactive X chromosome (Xi) chromatin via Repeat C. Alternatively, the LNA molecule's binding to Repeat C could change RNA conformation and interfere with a remote anchoring domain. While RNA displacement occurs with rapid kinetics, the recovery period is prolonged. Although full Xist clouds are restored within 8 hours, the full complement of PRC2 is not recovered for up to 24 hours. This implies that, during the spread of X chromosome inactivation (XCI), synthesis of the RNA is not the rate-limiting step; rather, it is the recruitment of associated silencing proteins such as PRC2. The rapid displacement of Xist and the slow kinetics of recovery provided a large window of opportunity to investigate Xist's spreading pattern relative to that of PRC2. Time-course analysis during the recovery phase indicates that Xist RNA binds most strongly near the Xist locus at first but spreads to the rest of Xi at the same time. Similarly, PRC2 is recruited synchronously throughout the X. Interestingly, neither Xist nor PRC2 levels reach saturation immediately, as the coating of Xist is not complete until t=8 hr and binding of PRC2 does not peak until t=24 hr. Combined, this analysis implies that establishment of chromosome-wide silencing may be relatively slow.

As demonstrated herein, LNA molecules can be used as a valuable tool to manipulate and aid analysis of long nuclear ncRNAs. Advantages offered by an LNA molecule-based system are the relatively low costs, easy delivery, and rapid action. While other inhibitory nucleic acids may exhibit effects after longer periods of time, LNA molecules exhibit effects that are more rapid, e.g., a comparatively early onset of activity, are fully reversible after a recovery period following the synthesis of new paRNA, and occur without causing substantial or substantially complete RNA cleavage or degradation. One or more of these design properties may be desired properties of the inhibitory nucleic acids of the invention. Additionally, LNA as molecules make possible the systematic targeting of domains within much longer nuclear transcripts. Although a PNA-based system has been described earlier, the effects on Xi were apparent only after 24 hours (Beletskii et al., Proc Natl Acad Sci USA 98:9215-9220 (2001)). The LNA technology enables high-throughput screens for functional analysis of long non-coding RNAs and also provides a novel tool to manipulate chromatin states in vivo for therapeutic applications.

In various related aspects, the methods described herein include using LNA molecules to target paRNAs for a number of uses, including as a research tool to probe the function of a specific paRNA, e.g., in vitro or in vivo. The methods include selecting one or more desired paRNAs, designing one or more LNA molecules that target the paRNA, providing the designed LNA molecule, and administering the LNA molecule to a cell or animal. The methods can optionally include selecting a region of the paRNA and designing one or more LNA molecules that target that region of the paRNA.

Aberrant imprinted gene expression is implicated in several diseases including Long QT syndrome, Beckwith-Wiedemann, Prader-Willi, and Angelman syndromes, as well as behavioral disorders and carcinogenesis (see, e.g., Falls et al., Am. J. Pathol. 154:635-647 (1999); Lalande, Annu Rev Genet 30:173-195 (1996); Hall Annu Rev Med. 48:35-44 (1997)). LNA molecules can be created to treat such imprinted diseases. As one example, the long QT Syndrome can be caused by a K+ gated Calcium-channel encoded by Kcnq1. This gene is regulated by its antisense counterpart, the long noncoding RNA, Kcnq1ot1 (Pandey et al., Mol Cell. 2008 Oct. 24; 32(2):232-46). Disease arises when Kcnq1ot1 is aberrantly expressed. LNA molecules can be created to downregulate Kcnq1ot1, thereby restoring expression of Kcnq1. As another example, LNA molecules could inhibit paRNA cofactors for polycomb complex chromatin modifiers to reverse the imprinted defect. From a commercial and clinical perspective, the timepoints between about 1 to 24 hours potentially define a window for epigenetic reprogramming. The advantage of the LNA system is that it works quickly, with a defined half-life, and is therefore reversible upon degradation of LNAs, at the same time that it provides a discrete timeframe during which epigenetic manipulations can be made. By targeting nuclear long ncRNAs, LNA molecules or similar polymers, e.g., xylo-LNAs, might be utilized to manipulate the chromatin state of cells in culture or in vivo, by transiently eliminating the regulatory RNA and associated proteins long enough to alter the underlying locus for therapeutic purposes. In particular, LNA molecules or similar polymers that specifically bind to, or are complementary to, PRC2-binding paRNA can prevent recruitment of PRC2 to a specific chromosomal locus, in a gene-specific fashion. LNA molecules might also be administered in vivo to treat other human diseases, such as but not limited to cancer, neurological disorders, infections, inflammation, and myotonic dystrophy. For example, LNA molecules might be delivered to tumor cells to downregulate the biologic activity of a growth-promoting or oncogenic long nuclear ncRNA (e.g., Gtl2 or MALAT1 (Luo et al., Hepatology. 44(4):1012-24 (2006)), a paRNA associated with metastasis and is frequently upregulated in cancers). Repressive paRNAs downregulating tumor suppressors can also be targeted by LNA molecules to promote reexpression. For example, expression of the INK4b/ARF/INK4a tumor suppressor locus is controlled by Polycomb group proteins including PRC1 and PRC2 and repressed by the antisense noncoding RNA ANRIL (Yap et al., Mol Cell. 2010 Jun. 11; 38(5):662-74). ANRIL can be targeted by LNA molecules to promote reexpression of the INK4b/ARF/INK4a tumor suppressor. Some paRNA may be positive regulators of oncogenes. Such “activating paRNAs” have been described recently (e.g., Jpx (Tian et al., Cell. 143(3):390-403 (2010) and others (Ørom et al., Cell. 143(1):46-58 (2010)). Therefore, LNA molecules could be directed at these activating paRNAs to downregulate oncogenes. LNA molecules could also be delivered to inflammatory cells to downregulate regulatory paRNA that modulate the inflammatory or immune response. (e.g., LincRNA-Cox2, see Guttman et al., Nature. 458(7235):223-7. Epub 2009 Feb. 1 (2009)).

In still other related aspects, the LNA molecules targeting paRNAs described herein can be used to create animal or cell models of conditions associated with altered gene expression (e.g., as a result of altered epigenetics).

For example, it was first noticed about half a century ago that X chromosome changes are often seen in female reproductive cancers. Some 70% of breast carcinomas lack a ‘Barr body’, the cytologic hallmark of the inactive X chromosome (Xi), and instead harbor two or more active Xs (Xa). Additional X's are also a risk factor for men, as XXY men (Klinefelter Syndrome) have a 20- to 50-fold increased risk of breast cancer in a BRCA1 background. The X is also known to harbor a number of oncogenes. Supernumerary Xa's correlate with a poor prognosis and stand as one of the most common cytogenetic abnormalities not only in reproductive cancers but also in leukemias, lymphomas, and germ cell tumors of both sexes. See, e.g., Liao et al., Cancer Invest 21, 641-58 (2003); Spatz et al., Nat Rev Cancer 4, 617-29 (2004); Barr et al., Proc Can Cancer Conf 2, 3-16 (1957); Borah et al., J Surg Oncol 13, 1-7 (1980); Camargo and Wang, Hum Genet 55, 81-5 (1980); Dutrillaux et al., Int J Cancer 38, 475-9 (1986); Ghosh and Shah, Cancer Genet Cytogenet 4, 269-74 (1981); Ghosh and Shah, Med Hypotheses 7, 1099-104 (1981); Ghosh et al., Acta Cytol 27, 202-3 (1983); Huang et al., Mol Cancer Ther 1, 769-76 (2002); Kawakami et al., Lancet 363, 40-2 (2004); Kawakami et al., J Urol 169, 1546-52 (2003); Kawakami et al., Oncogene 23, 6163-9 (2004); Moore and Barr, Br J Cancer 9, 246-52 (1955); Moore and Barr, Br J Cancer 11, 384-90 (1957); Moore et al., J Exp Zool 135, 101-25 (1957); Rosen et al., Ann Clin Lab Sci 7, 491-9 (1977); Sirchia et al., Cancer Res 65, 2139-46 (2005); Tavares, Lancet 268, 948-9 (1955); Tavares, Medico (Porto) 12, 97-100 (1961); Tavares, Acta Cytol 6, 90-4 (1962); Wang et al., Cancer Genet Cytogenet 46, 271-80 (1990); and Ganesan et al., Cold Spring Harb Symp Quant Biol 70, 93-7 (2005).

See also PCT/US11/60493, which is incorporated by reference herein in its entirety.

Antagomirs

In some embodiments, the inhibitory nucleic acid is an antagomir. Antagomirs are chemically modified antisense oligonucleotides that can target an paRNA. For example, an antagomir for use in the methods described herein can include a nucleotide sequence sufficiently complementary to hybridize to an paRNA target sequence of about 12 to 25 nucleotides, preferably about 15 to 23 nucleotides.

In some embodiments, antagomirs include a cholesterol moiety, e.g., at the 3′-end. In some embodiments, antagomirs have various modifications for RNase protection and pharmacologic properties such as enhanced tissue and cellular uptake. For example, in addition to the modifications discussed above for antisense oligos, an antagomir can have one or more of complete or partial 2′-O-methylation of sugar and/or a phosphorothioate backbone. Phosphorothioate modifications provide protection against RNase or other nuclease activity and their lipophilicity contributes to enhanced tissue uptake. In some embodiments, the antagomir cam include six phosphorothioate backbone modifications; two phosphorothioates are located at the 5′-end and four at the 3′-end, but other patterns of phosphorothioate modification are also commonly employed and effective. See, e.g., Krutzfeldt et al., Nature 438, 685-689 (2005); Czech, N Engl J Med 2006; 354:1194-1195 (2006); Robertson et al., Silence. 1:10 (2010); Marquez and McCaffrey, Hum Gene Ther. 19(l):27-38 (2008); van Rooij et al., Circ Res. 103(9):919-928 (2008); and Liu et al., Int. J. Mol. Sci. 9:978-999 (2008). Krutzfeld et al. (2005) describe chemically engineered oligonucleotides, termed ‘antagomirs’, that are reported to be efficient and specific silencers of endogenous miRNAs in mice.

In general, the design of an antagomir avoids target RNA degradation due to the modified sugars present in the molecule. The presence of an unbroken string of unmodified sugars supports RNAseH recruitment and enzymatic activity. Thus, typically the design of an antagomir will include bases that contain modified sugar (e.g., LNA), at the ends or interspersed with natural ribose or deoxyribose nucleobases.

Antagomirs useful in the present methods can also be modified with respect to their length or otherwise the number of nucleotides making up the antagomir. In some embodiments, the antagomirs must retain specificity for their target, i.e., must not directly bind to, or directly significantly affect expression levels of, transcripts other than the intended target. In some embodiments, antagomirs may exhibit nonspecific binding that does not produce significant undesired biologic effect, e.g., the antagomirs do not affect expression levels of non-target transcripts or their association with regulatory proteins or regulatory RNAs.

Interfering RNA, Including siRNA/shRNA

In some embodiments, the inhibitory nucleic acid sequence that is complementary to an paRNA can be an interfering RNA, including but not limited to a small interfering RNA (“siRNA”) or a small hairpin RNA (“shRNA”). Methods for constructing interfering RNAs are well known in the art. For example, the interfering RNA can be assembled from two separate oligonucleotides, where one strand is the sense strand and the other is the antisense strand, wherein the antisense and sense strands are self-complementary (i.e., each strand comprises nucleotide sequence that is complementary to nucleotide sequence in the other strand; such as where the antisense strand and sense strand form a duplex or double stranded structure); the antisense strand comprises nucleotide sequence that is complementary to a nucleotide sequence in a target nucleic acid molecule or a portion thereof (i.e., an undesired gene) and the sense strand comprises nucleotide sequence corresponding to the target nucleic acid sequence or a portion thereof. Alternatively, interfering RNA is assembled from a single oligonucleotide, where the self-complementary sense and antisense regions are linked by means of nucleic acid based or non-nucleic acid-based linker(s). The interfering RNA can be a polynucleotide with a duplex, asymmetric duplex, hairpin or asymmetric hairpin secondary structure, having self-complementary sense and antisense regions, wherein the antisense region comprises a nucleotide sequence that is complementary to nucleotide sequence in a separate target nucleic acid molecule or a portion thereof and the sense region having nucleotide sequence corresponding to the target nucleic acid sequence or a portion thereof. The interfering can be a circular single-stranded polynucleotide having two or more loop structures and a stem comprising self-complementary sense and antisense regions, wherein the antisense region comprises nucleotide sequence that is complementary to nucleotide sequence in a target nucleic acid molecule or a portion thereof and the sense region having nucleotide sequence corresponding to the target nucleic acid sequence or a portion thereof, and wherein the circular polynucleotide can be processed either in vivo or in vitro to generate an active siRNA molecule capable of mediating RNA interference.

In some embodiments, the interfering RNA coding region encodes a self-complementary RNA molecule having a sense region, an antisense region and a loop region. Such an RNA molecule when expressed desirably forms a “hairpin” structure, and is referred to herein as an “shRNA.” The loop region is generally between about 2 and about 10 nucleotides in length. In some embodiments, the loop region is from about 6 to about 9 nucleotides in length. In some embodiments, the sense region and the antisense region are between about 15 and about 20 nucleotides in length. Following post-transcriptional processing, the small hairpin RNA is converted into a siRNA by a cleavage event mediated by the enzyme Dicer, which is a member of the RNase III family. The siRNA is then capable of inhibiting the expression of a gene with which it shares homology. For details, see Brummelkamp et al., Science 296:550-553, (2002); Lee et al, Nature Biotechnol., 20, 500-505, (2002): Miyagishi and Taira, Nature Biotechnol 20:497-500, (2002); Paddison et al. Genes & Dev. 16:948-958, (2002); Paul, Nature Biotechnol, 20, 505-508, (2002); Sui, Proc. Natl. Acad. Sd. USA, 99(6), 5515-5520, (2002); Yu et al. Proc NatlAcadSci USA 99:6047-6052, (2002).

The target RNA cleavage reaction guided by siRNAs is highly sequence specific. In general, siRNA containing a nucleotide sequences identical to a portion of the target nucleic acid are preferred for inhibition. However, 100% sequence identity between the siRNA and the target gene is not required to practice the present invention. Thus the invention has the advantage of being able to tolerate sequence variations that might be expected due to genetic mutation, strain polymorphism, or evolutionary divergence. For example, siRNA sequences with insertions, deletions, and single point mutations relative to the target sequence have also been found to be effective for inhibition. Alternatively, siRNA sequences with nucleotide analog substitutions or insertions can be effective for inhibition. In general the siRNAs must retain specificity for their target, i.e., must not directly bind to, or directly significantly aftfect expression levels of, transcripts other than the intended target.

Ribozymes

In some embodiments, the inhibitory nucleic acids are ribozymes. Trans-cleaving enzymatic nucleic acid molecules can also be used; they have shown promise as therapeutic agents for human disease (Usman & McSwiggen, 1995 Ann. Rep. Med. Chem. 30, 285-294; Christoffersen and Marr, 1995 J. Med. Chem. 38, 2023-2037). Enzymatic nucleic acid molecules can be designed to cleave specific paRNA targets within the background of cellular RNA. Such a cleavage event renders the paRNA non-functional.

In general, enzymatic nucleic acids with RNA cleaving activity act by first binding to a target RNA. Such binding occurs through the target binding portion of an enzymatic nucleic acid which is held in close proximity to an enzymatic portion of the molecule that acts to cleave the target RNA. Thus, the enzymatic nucleic acid first recognizes and then binds a target RNA through complementary base pairing, and once bound to the correct site, acts enzymatically to cut the target RNA. Strategic cleavage of such a target RNA will destroy its ability to direct synthesis of an encoded protein. After an enzymatic nucleic acid has bound and cleaved its RNA target, it is released from that RNA to search for another target and can repeatedly bind and cleave new targets.

Several approaches such as in vitro selection (evolution) strategies (Orgel, 1979, Proc. R. Soc. London, B 205, 435) have been used to evolve new nucleic acid catalysts capable of catalyzing a variety of reactions, such as cleavage and ligation of phosphodiester linkages and amide linkages, (Joyce, 1989, Gene, 82, 83-87; Beaudry et al., 1992, Science 257, 635-641; Joyce, 1992, Scientific American 267, 90-97; Breaker et al, 1994, TIBTECH 12, 268; Bartel et al, 1993, Science 261:1411-1418; Szostak, 1993, TIBS 17, 89-93; Kumar et al, 1995, FASEB J., 9, 1183; Breaker, 1996, Curr. Op. Biotech., 1, 442). The development of ribozymes that are optimal for catalytic activity would contribute significantly to any strategy that employs RNA-cleaving ribozymes for the purpose of regulating gene expression. The hammerhead ribozyme, for example, functions with a catalytic rate (kcat) of about 1 min⁻¹ in the presence of saturating (10 MM) concentrations of Mg²⁺ cofactor. An artificial “RNA ligase” ribozyme has been shown to catalyze the corresponding self-modification reaction with a rate of about 100 min⁻¹. In addition, it is known that certain modified hammerhead ribozymes that have substrate binding arms made of DNA catalyze RNA cleavage with multiple turn-over rates that approach 100 min⁻¹.

Making and Using Inhibitory Nucleic Acids

The nucleic acid sequences used to practice the methods described herein, whether RNA, cDNA, genomic DNA, vectors, viruses or hybrids thereof, can be isolated from a variety of sources, genetically engineered, amplified, and/or expressed/generated recombinantly. If desired, nucleic acid sequences of the invention can be inserted into delivery vectors and expressed from transcription units within the vectors. The recombinant vectors can be DNA plasmids or viral vectors. Generation of the vector construct can be accomplished using any suitable genetic engineering techniques well known in the art, including, without limitation, the standard techniques of PCR, oligonucleotide synthesis, restriction endonuclease digestion, ligation, transformation, plasmid purification, and DNA sequencing, for example as described in Sambrook et al. Molecular Cloning: A Laboratory Manual. (1989)), Coffin et al. (Retroviruses. (1997)) and “RNA Viruses: A Practical Approach” (Alan J. Cann, Ed., Oxford University Press, (2000)).

Preferably, inhibitory nucleic acids of the invention are synthesized chemically. Nucleic acid sequences used to practice this invention can be synthesized in vitro by well-known chemical synthesis techniques, as described in, e.g., Adams (1983) J. Am. Chem. Soc. 105:661; Belousov (1997) Nucleic Acids Res. 25:3440-3444: Frenkel (1995) Free Radic. Biol. Med. 19:373-380; Blommers (1994) Biochemistry 33:7886-7896; Narang (1979) Meth. Enzymol. 68:90; Brown (1979) Meth. Enzymol. 68:109; Beaucage (1981) Tetra. Lett. 22:1859; U.S. Pat. No. 4,458,066; WO/2008/043753 and WO/2008/049085, and the references cited therein.

Nucleic acid sequences of the invention can be stabilized against nucleolytic degradation such as by the incorporation of a modification, e.g., a nucleotide modification. For example, nucleic acid sequences of the invention includes a phosphorothioate at least the first, second, or third internucleotide linkage at the 5′ or 3′ end of the nucleotide sequence. As another example, the nucleic acid sequence can include a 2′-modified nucleotide, e.g., a 2′-deoxy, 2′-deoxy-2′-fluoro, 2′-O-methyl, 2′-O-methoxyethyl (2′-O-MOE), 2′-O-aminopropyl (2′-O-AP), 2′-O-dimethylaminoethyl (2′-O-DMAOE), 2′-O-dimethylaminopropyl (2′-O-DMAP), 2′-O-dimethylaminoethyloxyethyl (2′-O-DMAEOE), or 2′-O—N-methylacetamido (2′-O-NMA).

As another example, the nucleic acid sequence can include at least one 2′-O-methyl-modified nucleotide, and in some embodiments, all of the nucleotides include a 2′-O-methyl modification. In some embodiments, the nucleic acids are “locked,” i.e., comprise nucleic acid analogues in which the ribose ring is “locked” by a methylene bridge connecting the 2′-O atom and the 4′-C atom (see, e.g., Kaupinnen et al., Drug Disc. Today 2(3):287-290 (2005); Koshkin et al., J. Am. Chem. Soc., 120(50):13252-13253 (1998)). For additional modifications see US 20100004320, US 20090298916, and US 20090143326.

It is understood that any of the modified chemistries or formats of inhibitory nucleic acids described herein can be combined with each other, and that one, two, three, four, five, or more different types of modifications can be included within the same molecule.

Techniques for the manipulation of nucleic acids used to practice this invention, such as, e.g., subcloning, labeling probes (e.g., random-primer labeling using Klenow polymerase, nick translation, amplification), sequencing, hybridization and the like are well described in the scientific and patent literature, see, e.g., Sambrook et al., Molecular Cloning: A Laboratory Manual 3d ed. (2001); Current Protocols in Molecular Biology, Ausubel et al., eds. (John Wiley & Sons, Inc., New York 2010); Kriegler, Gene Transfer and Expression: A Laboratory Manual (1990); Laboratory Techniques In Biochemistry And Molecular Biology:

Hybridization With Nucleic Acid Probes, Part 1. Theory and Nucleic Acid Preparation, Tijssen, ed. Elsevier, N.Y. (1993).

Modification Patterns

In some embodiments, the inhibitory oligonucleotide comprises locked nucleic acids (LNA), ENA modified nucleotides, 2′-O-methyl nucleotides, or 2′-fluoro-deoxyribonucleotides. In some embodiments, the inhibitory oligonucleotide comprises alternating deoxyribonucleotides and 2′-fluoro-deoxyribonucleotides. In some embodiments, the inhibitory oligonucleotide comprises alternating deoxyribonucleotides and 2′-O-methyl nucleotides. In some embodiments, the inhibitory oligonucleotide comprises alternating deoxyribonucleotides and ENA modified nucleotides. In some embodiments, the inhibitory oligonucleotide comprises alternating deoxyribonucleotides and locked nucleic acid nucleotides. In some embodiments, the inhibitory oligonucleotide comprises alternating locked nucleic acid nucleotides and 2′-O-methyl nucleotides.

The oligonucleotide may comprise deoxyribonucleotides flanked by at least one bridged nucleotide (e.g., a LNA nucleotide, cEt nucleotide, ENA nucleotide) on each of the 5′ and 3′ ends of the deoxyribonucleotides. The oligonucleotide may comprise deoxyribonucleotides flanked by 1, 2, 3, 4, 5, 6, 7, 8 or more bridged nucleotides (e.g., LNA nucleotides, cEt nucleotides, ENA nucleotides) on each of the 5′ and 3′ ends of the deoxyribonucleotides. In some embodiments, the 5′ nucleotide of the oligonucleotide is a deoxyribonucleotide. In some embodiments, the 5′ nucleotide of the oligonucleotide is a locked nucleic acid nucleotide. In some embodiments, the nucleotides of the oligonucleotide comprise deoxyribonucleotides flanked by at least one locked nucleic acid nucleotide on each of the 5′ and 3′ ends of the deoxyribonucleotides. In some embodiments, the nucleotide at the 3′ position of the oligonucleotide has a 3′ hydroxyl group or a 3′ thiophosphate.

In some embodiments, the inhibitory oligonucleotide comprises phosphorothioate internucleotide linkages. In some embodiments, the single stranded oligonucleotide comprises phosphorothioate internucleotide linkages between at least two nucleotides. In some embodiments, the single stranded oligonucleotide comprises phosphorothioate internucleotide linkages between all nucleotides.

It should be appreciated that the oligonucleotide can have any combination of modifications as described herein.

As an example, the oligonucleotide may comprise a nucleotide sequence having one or more of the following modification patterns.

(a) (X)Xxxxxx, (X)xXxxxx, (X)xxXxxx, (X)xxxXxx, (X)xxxxXx and (X)xxxxxX,

(b) (X)XXxxxx, (X)XxXxxx, (X)XxxXxx, (X)XxxxXx, (X)XxxxxX, (X)xXXxxx, (X)xXxXxx, (X)xXxxXx, (X)xXxxxX, (X)xxXXxx, (X)xxXxXx, (X)xxXxxX, (X)xxxXXx, (X)xxxXxX and (X)xxxxXX,

(c) (X)XXXxxx, (X)xXXXxx, (X)xxXXXx, (X)xxxXXX, (X)XXxXxx, (X)XXxxXx, (X)XXxxxX, (X)xXXxXx, (X)xXXxxX, (X)xxXXxX, (X)XxXXxx, (X)XxxXXx (X)XxxxXX, (X)xXxXXx, (X)xXxxXX, (X)xxXxXX, (X)xXxXxX and (X)XxXxXx,

(d) (X)xxXXX, (X)xXxXXX, (X)xXXxXX, (X)xXXXxX, (X)xXXXXx, (X)XxxXXXX, (X)XxXxXX, (X)XxXXxX, (X)XxXXx, (X)XXxxXX, (X)XXxXxX, (X)XXxXXx, (X)XXXxxX, (X)XXXxXx, and (X)XXXXxx,

(e) (X)xXXXXX, (X)XxXXXX, (X)XXxXXX, (X)XXXxXX, (X)XXXXxX and (X)XXXXXx, and

(f) XXXXXX, XxXXXXX, XXxXXXX, XXXxXXX, XXXXxXX, XXXXXxX and XXXXXXx, in which “X” denotes a nucleotide analogue, (X) denotes an optional nucleotide analogue, and “x” denotes a DNA or RNA nucleotide unit. Each of the above listed patterns may appear one or more times within an oligonucleotide, alone or in combination with any of the other disclosed modification patterns.

In some embodiments, the oligonucleotide is a gapmer (contain a central stretch (gap) of DNA monomers sufficiently long to induce RNase H cleavage, flanked by blocks of LNA modified nucleotides: see, e.g., Stanton et al., Nucleic Acid Ther. 2012. 22: 344-359; Nowotny et al., Cell, 121:1005-1016, 2005; Kurreck, European Journal of Biochemistry 270: 1628-1644, 2003; FLuiter et al., Mol Biosyst. 5(8):838-43, 2009). In some embodiments, the oligonucleotide is a mixmer (includes alternating short stretches of LNA and DNA; Naguibneva et al., Biomed Pharmacother. 2006 November; 60(9):633-8; Orom et al., Gene. 2006 May 10; 3720:137-41).

Additional Sequence Structural Information

The inhibitory oligonucleotides described herein may have a sequence that does not contain guanosine nucleotide stretches (e.g., 3 or more, 4 or more, 5 or more, 6 or more consecutive guanosine nucleotides). In some embodiments, oligonucleotides having guanosine nucleotide stretches have increased non-specific binding and/or off-target effects, compared with oligonucleotides that do not have guanosine nucleotide stretches.

The inhibitory oligonucleotides have a sequence that has less than a threshold level of sequence identity with every sequence of nucleotides, of equivalent length, that map to a genomic position encompassing or in proximity to an off-target gene. For example, an oligonucleotide may be designed to ensure that it does not have a sequence that maps to genomic positions encompassing or in proximity with all known genes (e.g., all known protein coding genes) other than the gene of interest. The oligonucleotide is expected to have a reduced likelihood of having off-target effects. The threshold level of sequence identity may be 50%, 60%, 70%, 80%, 85%, 90%, 95%, 99% or 100% sequence identity.

The inhibitory oligonucleotides may have a sequence that is complementary to a region that encodes an RNA that forms a secondary structure comprising at least two single stranded loops. In some embodiments, oligonucleotides that are complementary to a region that encodes an RNA that forms a secondary structure comprising one or more single stranded loops (e.g., at least two single stranded loops) have a greater likelihood of being active (e.g., of being capable of activating or enhancing expression of a target gene) than a randomly selected oligonucleotide. In some cases, the secondary structure may comprise a double stranded stem between the at least two single stranded loops. Accordingly, the area of complementarity between the oligonucleotide and the nucleic acid region may be at a location of the PRC2 associated region that encodes at least a portion of at least one of the loops. In some embodiments, the predicted secondary structure RNA (e.g., paRNA) containing the nucleic acid region is determined using RNA secondary structure prediction algorithms, e.g., RNAfold, mfold. In some embodiments, oligonucleotides are designed to target a region of the RNA that forms a secondary structure comprising one or more single stranded loop (e.g., at least two single stranded loops) structures which may comprise a double stranded stem between the at least two single stranded loops.

The inhibitory oligonucleotide may have a sequence that is has greater than 30% G-C content, greater than 40% G-C content, greater than 50% G-C content, greater than 60% G-C content, greater than 70% G-C content, or greater than 80% G-C content. The inhibitory oligonucleotide may have a sequence that has up to 100% G-C content, up to 95% G-C content, up to 90% G-C content, or up to 80% G-C content.

The inhibitory oligonucleotide may be complementary to a chromosome of a different species (e.g., a mouse, rat, rabbit, goat, monkey, etc.) at a position that encompasses or that is in proximity to that species' homolog of the gene of interest. The inhibitory oligonucleotide may be complementary to a human genomic region encompassing or in proximity to the target gene and also be complementary to a mouse genomic region encompassing or in proximity to the mouse homolog of the target gene. Oligonucleotides having these characteristics may be tested in vivo or in vitro for efficacy in multiple species (e.g., human and mouse). This approach also facilitates development of clinical candidates for treating human disease by selecting a species in which an appropriate animal exists for the disease. In some embodiments, the region of complementarity of the inhibitory oligonucleotide is complementary with at least 8 to 15, 8 to 30, 8 to 40, or 10 to 50, or 5 to 50, or 5 to 40 bases, e.g., 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48, 49, or 50 consecutive nucleotides of a paRNA disclosed in the tables provided herein. In some embodiments, the region of complementarity is complementary with at least 8 consecutive nucleotides of a paRNA disclosed in the tables provided herein.

Pharmaceutical Compositions

The methods described herein can include the administration of pharmaceutical compositions and formulations comprising inhibitory nucleic acid sequences designed to target an paRNA.

In some embodiments, the compositions are formulated with a pharmaceutically acceptable carrier. The pharmaceutical compositions and formulations can be administered parenterally, topically, orally or by local administration, such as by aerosol or transdermally. The pharmaceutical compositions can be formulated in any way and can be administered in a variety of unit dosage forms depending upon the condition or disease and the degree of illness, the general medical condition of each patient, the resulting preferred method of administration and the like. Details on techniques for formulation and administration of pharmaceuticals are well described in the scientific and patent literature, see, e.g., Remington: The Science and Practice of Pharmacy, 21st ed., 2005.

The inhibitory nucleic acids can be administered alone or as a component of a pharmaceutical formulation (composition). The compounds may be formulated for administration, in any convenient way for use in human or veterinary medicine. Wetting agents, emulsifiers and lubricants, such as sodium lauryl sulfate and magnesium stearate, as well as coloring agents, release agents, coating agents, sweetening, flavoring and perfuming agents, preservatives and antioxidants can also be present in the compositions.

Formulations of the compositions of the invention include those suitable for intradermal, inhalation, oral/nasal, topical, parenteral, rectal, and/or intravaginal administration. The formulations may conveniently be presented in unit dosage form and may be prepared by any methods well known in the art of pharmacy. The amount of active ingredient (e.g., nucleic acid sequences of this invention) which can be combined with a carrier material to produce a single dosage form will vary depending upon the host being treated, the particular mode of administration, e.g., intradermal or inhalation. The amount of active ingredient which can be combined with a carrier material to produce a single dosage form will generally be that amount of the compound which produces a therapeutic effect, e.g., an antigen specific T cell or humoral response.

Pharmaceutical formulations of this invention can be prepared according to any method known to the art for the manufacture of pharmaceuticals. Such drugs can contain sweetening agents, flavoring agents, coloring agents and preserving agents. A formulation can be admixtured with nontoxic pharmaceutically acceptable excipients which are suitable for manufacture. Formulations may comprise one or more diluents, emulsifiers, preservatives, buffers, excipients, etc. and may be provided in such forms as liquids, powders, emulsions, lyophilized powders, sprays, creams, lotions, controlled release formulations, tablets, pills, gels, on patches, in implants, etc.

Pharmaceutical formulations for oral administration can be formulated using pharmaceutically acceptable carriers well known in the art in appropriate and suitable dosages. Such carriers enable the pharmaceuticals to be formulated in unit dosage forms as tablets, pills, powder, dragees, capsules, liquids, lozenges, gels, syrups, slurries, suspensions, etc., suitable for ingestion by the patient. Pharmaceutical preparations for oral use can be formulated as a solid excipient, optionally grinding a resulting mixture, and processing the mixture of granules, after adding suitable additional compounds, if desired, to obtain tablets or dragee cores. Suitable solid excipients are carbohydrate or protein fillers include, e.g., sugars, including lactose, sucrose, mannitol, or sorbitol; starch from corn, wheat, rice, potato, or other plants; cellulose such as methyl cellulose, hydroxypropylmethyl-cellulose, or sodium carboxy-methylcellulose; and gums including arabic and tragacanth; and proteins, e.g., gelatin and collagen. Disintegrating or solubilizing agents may be added, such as the cross-linked polyvinyl pyrrolidone, agar, alginic acid, or a salt thereof, such as sodium alginate. Push-fit capsules can contain active agents mixed with a filler or binders such as lactose or starches, lubricants such as talc or magnesium stearate, and, optionally, stabilizers. In soft capsules, the active agents can be dissolved or suspended in suitable liquids, such as fatty oils, liquid paraffin, or liquid polyethylene glycol with or without stabilizers.

Aqueous suspensions can contain an active agent (e.g., nucleic acid sequences of the invention) in admixture with excipients suitable for the manufacture of aqueous suspensions, e.g., for aqueous intradermal injections. Such excipients include a suspending agent, such as sodium carboxymethylcellulose, methylcellulose, hydroxypropylmethylcellulose, sodium alginate, polyvinylpyrrolidone, gum tragacanth and gum acacia, and dispersing or wetting agents such as a naturally occurring phosphatide (e.g., lecithin), a condensation product of an alkylene oxide with a fatty acid (e.g., polyoxyethylene stearate), a condensation product of ethylene oxide with a long chain aliphatic alcohol (e.g., heptadecaethylene oxycetanol), a condensation product of ethylene oxide with a partial ester derived from a fatty acid and a hexitol (e.g., polyoxyethylene sorbitol mono-oleate), or a condensation product of ethylene oxide with a partial ester derived from fatty acid and a hexitol anhydride (e.g., polyoxyethylene sorbitan mono-oleate). The aqueous suspension can also contain one or more preservatives such as ethyl or n-propyl p-hydroxybenzoate, one or more coloring agents, one or more flavoring agents and one or more sweetening agents, such as sucrose, aspartame or saccharin. Formulations can be adjusted for osmolarity.

In some embodiments, oil-based pharmaceuticals are used for administration of nucleic acid sequences of the invention. Oil-based suspensions can be formulated by suspending an active agent in a vegetable oil, such as arachis oil, olive oil, sesame oil or coconut oil, or in a mineral oil such as liquid paraffin; or a mixture of these. See e.g., U.S. Pat. No. 5,716,928 describing using essential oils or essential oil components for increasing bioavailability and reducing inter- and intra-individual variability of orally administered hydrophobic pharmaceutical compounds (see also U.S. Pat. No. 5,858,401). The oil suspensions can contain a thickening agent, such as beeswax, hard paraffin or cetyl alcohol. Sweetening agents can be added to provide a palatable oral preparation, such as glycerol, sorbitol or sucrose. These formulations can be preserved by the addition of an antioxidant such as ascorbic acid. As an example of an injectable oil vehicle, see Minto (1997) J. Pharmacol. Exp. Ther. 281:93-102.

Pharmaceutical formulations can also be in the form of oil-in-water emulsions. The oily phase can be a vegetable oil or a mineral oil, described above, or a mixture of these. Suitable emulsifying agents include naturally-occurring gums, such as gum acacia and gum tragacanth, naturally occurring phosphatides, such as soybean lecithin, esters or partial esters derived from fatty acids and hexitol anhydrides, such as sorbitan mono-oleate, and condensation products of these partial esters with ethylene oxide, such as polyoxyethylene sorbitan mono-oleate. The emulsion can also contain sweetening agents and flavoring agents, as in the formulation of syrups and elixirs. Such formulations can also contain a demulcent, a preservative, or a coloring agent. In alternative embodiments, these injectable oil-in-water emulsions of the invention comprise a paraffin oil, a sorbitan monooleate, an ethoxylated sorbitan monooleate and/or an ethoxylated sorbitan trioleate.

The pharmaceutical compounds can also be administered by in intranasal, intraocular and intravaginal routes including suppositories, insufflation, powders and aerosol formulations (for examples of steroid inhalants, see e.g., Rohatagi (1995) J. Clin. Pharmacol. 35:1187-1193; Tjwa(1995) Ann. Allergy Asthma Immunol. 75:107-111). Suppositories formulations can be prepared by mixing the drug with a suitable non-irritating excipient which is solid at ordinary temperatures but liquid at body temperatures and will therefore melt in the body to release the drug. Such materials are cocoa butter and polyethylene glycols.

In some embodiments, the pharmaceutical compounds can be delivered transdermally, by a topical route, formulated as applicator sticks, solutions, suspensions, emulsions, gels, creams, ointments, pastes, jellies, paints, powders, and aerosols.

In some embodiments, the pharmaceutical compounds can also be delivered as microspheres for slow release in the body. For example, microspheres can be administered via intradermal injection of drug which slowly release subcutaneously; see Rao (1995) J. Biomater Sci. Polym. Ed. 7:623-645; as biodegradable and injectable gel formulations, see, e.g., Gao (1995) Pharm. Res. 12:857-863 (1995); or, as microspheres for oral administration, see, e.g., Eyles (1997) J. Pharm. Pharmacol. 49:669-674.

In some embodiments, the pharmaceutical compounds can be parenterally administered, such as by intravenous (IV) administration or administration into a body cavity or lumen of an organ. These formulations can comprise a solution of active agent dissolved in a pharmaceutically acceptable carrier. Acceptable vehicles and solvents that can be employed are water and Ringer's solution, an isotonic sodium chloride. In addition, sterile fixed oils can be employed as a solvent or suspending medium. For this purpose any bland fixed oil can be employed including synthetic mono- or diglycerides. In addition, fatty acids such as oleic acid can likewise be used in the preparation of injectables. These solutions are sterile and generally free of undesirable matter. These formulations may be sterilized by conventional, well known sterilization techniques. The formulations may contain pharmaceutically acceptable auxiliary substances as required to approximate physiological conditions such as pH adjusting and buffering agents, toxicity adjusting agents, e.g., sodium acetate, sodium chloride, potassium chloride, calcium chloride, sodium lactate and the like. The concentration of active agent in these formulations can vary widely, and will be selected primarily based on fluid volumes, viscosities, body weight, and the like, in accordance with the particular mode of administration selected and the patient's needs. For IV administration, the formulation can be a sterile injectable preparation, such as a sterile injectable aqueous or oleaginous suspension. This suspension can be formulated using those suitable dispersing or wetting agents and suspending agents. The sterile injectable preparation can also be a suspension in a nontoxic parenterally-acceptable diluent or solvent, such as a solution of 1,3-butanediol. The administration can be by bolus or continuous infusion (e.g., substantially uninterrupted introduction into a blood vessel for a specified period of time).

In some embodiments, the pharmaceutical compounds and formulations can be lyophilized. Stable lyophilized formulations comprising an inhibitory nucleic acid can be made by lyophilizing a solution comprising a pharmaceutical of the invention and a bulking agent, e.g., mannitol, trehalose, raffinose, and sucrose or mixtures thereof. A process for preparing a stable lyophilized formulation can include lyophilizing a solution about 2.5 mg/mL protein, about 15 mg/mL sucrose, about 19 mg/mL NaCl, and a sodium citrate buffer having a pH greater than 5.5 but less than 6.5. See, e.g., U.S. 20040028670.

The compositions and formulations can be delivered by the use of liposomes. By using liposomes, particularly where the liposome surface carries ligands specific for target cells, or are otherwise preferentially directed to a specific organ, one can focus the delivery of the active agent into target cells in vivo. See, e.g., U.S. Pat. Nos. 6,063,400; 6,007,839; Al-Muhammed (1996) J. Microencapsul. 13:293-306; Chonn (1995) Curr. Opin. Biotechnol. 6:698-708; Ostro (1989) Am. J. Hosp. Pharm. 46:1576-1587. As used in the present invention, the term “liposome” means a vesicle composed of amphiphilic lipids arranged in a bilayer or bilayers. Liposomes are unilamellar or multilamellar vesicles that have a membrane formed from a lipophilic material and an aqueous interior that contains the composition to be delivered. Cationic liposomes are positively charged liposomes that are believed to interact with negatively charged DNA molecules to form a stable complex. Liposomes that are pH-sensitive or negatively-charged are believed to entrap DNA rather than complex with it. Both cationic and noncationic liposomes have been used to deliver DNA to cells.

Liposomes can also include “sterically stabilized” liposomes, i.e., liposomes comprising one or more specialized lipids. When incorporated into liposomes, these specialized lipids result in liposomes with enhanced circulation lifetimes relative to liposomes lacking such specialized lipids. Examples of sterically stabilized liposomes are those in which part of the vesicle-forming lipid portion of the liposome comprises one or more glycolipids or is derivatized with one or more hydrophilic polymers, such as a polyethylene glycol (PEG) moiety. Liposomes and their uses are further described in U.S. Pat. No. 6,287,860.

The formulations of the invention can be administered for prophylactic and/or therapeutic treatments. In some embodiments, for therapeutic applications, compositions are administered to a subject who is at risk of or has a disorder described herein, in an amount sufficient to cure, alleviate or partially arrest the clinical manifestations of the disorder or its complications; this can be called a therapeutically effective amount.

The amount of pharmaceutical composition adequate to accomplish this is a therapeutically effective dose. The dosage schedule and amounts effective for this use, i.e., the dosing regimen, will depend upon a variety of factors, including the stage of the disease or condition, the severity of the disease or condition, the general state of the patient's health, the patient's physical status, age and the like. In calculating the dosage regimen for a patient, the mode of administration also is taken into consideration.

The dosage regimen also takes into consideration pharmacokinetics parameters well known in the art, i.e., the active agents' rate of absorption, bioavailability, metabolism, clearance, and the like (see, e.g., Hidalgo-Aragones (1996) J. Steroid Biochem. Mol. Biol. 58:611-617; Groning (1996) Pharmazie 51:337-341; Fotherby (1996) Contraception 54:59-69; Johnson (1995) J. Pharm. Sci. 84:1144-1146; Rohatagi (1995) Pharmazie 50:610-613: Brophy (1983) Eur. J. Clin. Pharmacol. 24:103-108; Remington: The Science and Practice of Pharmacy, 21st ed., 2005). The state of the art allows the clinician to determine the dosage regimen for each individual patient, active agent and disease or condition treated. Guidelines provided for similar compositions used as pharmaceuticals can be used as guidance to determine the dosage regiment, i.e., dose schedule and dosage levels, administered practicing the methods of the invention are correct and appropriate.

Single or multiple administrations of formulations can be given depending on for example: the dosage and frequency as required and tolerated by the patient, the degree and amount of therapeutic effect generated after each administration (e.g., effect on tumor size or growth), and the like. The formulations should provide a sufficient quantity of active agent to effectively treat, prevent or ameliorate conditions, diseases or symptoms.

In alternative embodiments, pharmaceutical formulations for oral administration are in a daily amount of between about 1 to 100 or more mg per kilogram of body weight per day. Lower dosages can be used, in contrast to administration orally, into the blood stream, into a body cavity or into a lumen of an organ. Substantially higher dosages can be used in topical or oral administration or administering by powders, spray or inhalation.

In some embodiments, the methods described herein can include co-administration with other drugs or pharmaceuticals, e.g., compositions for providing cholesterol homeostasis. For example, the inhibitory nucleic acids can be co-administered with drugs for treating or reducing risk of a disorder described herein.

EXAMPLES

The invention is further described in the following examples, which do not limit the scope of the invention described in the claims.

Methods

The following methods were used in the Examples set forth below.

Cell Culture and ES Cell Differentiation

For MEFs, female F1(129S1×CAST/EiJ) embryos were harvested on E 13.5 and fibroblasts were outgrown, immortalized with SV40 large T antigen, cloned, and those carrying an inactive X¹²⁹ were used. Female 16.7 ES cells (Lee et al., 1999) and Tsix^(TST)/+ (Ogawa et al., 2008) have been described. Differentiating ES cells were grown without LIF for 4 days, then plated for outgrowth until on d7.

ChIP-seq

ChIP samples were prepared and immunoprecipitated as described (Lee et al., 2006) using antibodies against H3K4me3 (Abcam, ab8580), H3K36me3 (Abcam, ab9050), H3K27me3 (Abcam, ab6002), EZH2 (Active Motif, 39639) and RNA polymerase II phosphorylated on Serine 5 of the C-terminal domain (Abeam, ab5131). ChIP DNA concentration was measured using the Quant-iT Picogreen dsDNA Assay kit (Invitrogen). DNA for Illumina sequencing was prepared according to Illumina instructions with minor modifications (ultrapure T4 DNA ligase (Enzymatics) for ligation, room-temperature purification of gel slices using QlAquick (Qiagen) spin columns and amplification using Phusion (NEB) GC buffer). Paired-end sequencing was carried out for 2× 36 cycles on a Genome Analyzer II (Illumina).

Allele-Specific Analysis

Mouse genome sequencing data (129S1/SvImJ and CAST/EiJ) from the Wellcome Trust Sanger Institute (sanger.ac.uk/resources/mouseigenomes/) aligned to the C57BL/6J reference genome (NCBI mm9) was screened for high quality single nucleotide polymorphisms (SNPs) and insertions/deletions indels. Variant genomes were constructed from mm9 using a total of 17,879,569 SNPs, 726,387 indels for CAST/EiJ, and 4,551,690 SNPs, 224,271 indels for 129S1/SvImJ. In total, the resulting CAST/EiJ and 129S1/SvImJ genomes differ in 22,095,665 SNPs and 948,567 indels. Read pairs were aligned to both genomes allowing for up to ˜5 mismatches at high-quality bases or 2-4 small gaps using novoalign (Keightley et al., Genome Res. July 2009 19: 1195-1201). Each uniquely aligned pair to the CAST/EiJ genome was compared to the corresponding pair aligned to the 129S1/SvImJ genome. Pairs that differed significantly in alignment score due mismatches/gaps were classified as allele-specific and the better alignment retained. Pairs with identical alignment scores or scores that differed only slightly due to fragment length penalties were classified as neutral. Each experiment yields three tracks: Cast, 129, and composite (neutral, 129, Cast combined).

Generation of Coverage Maps and Enrichment Segments

Alignment coordinates were mapped to mm9 to permit comparisons to mm9 annotations. To calculate coverage, fragments defined by paired reads were included, discarding duplicate fragments. Coverage was normalized by input. Chromosomal segments that are likely to be enriched for a chromatin epitope were defined by analyzing significantly enriched overlapping 1 kb windows. The significance of the coverage enrichment in a window was determined based on the null model of paired-end fragments randomly shuffled across the chromosome.

To calculate coverage, fragments defined by paired reads were included, discarding duplicate fragments. The average fragment length was approximately 300-400 bp. The resulting positional coverage in each sample was normalized by the corresponding input coverage, with a pseudocount of 1: n_(norm)=[(n+1)/(n_(i)+1)]*[Ni/N], where n, n_(I), N, and Ni are positional coverages in experiment and input, and total genome coverages in experiment and input, respectively.

To determine the likely regions of enrichment for chromatin modifications and EZH2, we used a window of 1 kb sliding over the chromosome length with the step of 50 bp. The significance of the window coverage at each position was assessed using the null model of randomly redistributed fragments. Specifically, each paired-end fragment at the given chromosome was assigned to a random location within this chromosome, followed by input normalization. The resulting normalized coverage of 1 Kb windows over all chromosomes was used to construct the random coverage distribution. Based on this distribution, P-value was assigned to the real window coverages. Windows with P-value below the significance cutoff were merged into segments, with up to 1 kb gap allowed between windows. The cutoff for calling significant window coverage was selected based on manual inspection of the segments produced at different cutoff values. The determined cutoffs showed high robustness between independent simulations.

Strongly covered segments for K4me3 and EZH2 were identified with the P-value cutoff of 10⁻⁵. Moderately covered segments for H3K27me3 and EZH2 were identified with absolute coverage cutoffs of 4.0 and 3.0 per position, respectively. Bivalent segments were identified in a similar fashion, with the requirement of a significant K4me3 coverage and a moderate K27me3 coverage within the same window.

Segments were classified as overlapping with K4me3 peaks, bivalent segments, and CpG islands if the corresponding feature occurred within 1 kb from the segment. CpG islands were defined by running EMBOSS 6.3.1 on unmasked genome with default parameters.

Chromosomal segments that are likely to be enriched for a chromatin modification or a DNA-binding protein were defined by merging adjacent significantly enriched 1 kb windows. The significance of the coverage enrichment in a window was determined based on the null model of originally aligned paired-end fragments being randomly shuffled across the chromosome.

Metagene and Metasite Profiles

The profiles of average coverage density over genes (metagene profiles) and over segments (metasite profiles) were constructed using normalization of profile densities so that the area under curve was proportional to the average gene/segment coverage at this chromosome. The profiles of average coverage density over genes (metagene profiles) and over sites were constructed as described before, with the exception for a different normalization that allows for the comparison of total gene/site coverage between alleles, chromosomes, and differentiation stages. Specifically, profile densities were normalized by the number of genes/sites at a given chromosome, so that the area under the curve is not equal to 1.0 but proportional to the average gene/site coverage at this chromosome.

Estimates of Density Map Correlations

Correlations between chromosomal density maps were calculated as Pearson correlation coefficients of coverages in non-overlapping windows, with estimates of statistical significance based on random permutation null model.

Correlations between chromosomal density maps were calculated based on the coverages of non-overlapping 1-5 kb windows over the entire chromosome. For the two compared marks, Pearson correlation coefficient was calculated on the sets of window coverages, and its statistical significance was estimated using random permutation null model. Specifically, 10⁵ simulations of random window shuffling were performed, resulting in the background distribution of Pearson correlation coefficients. This distribution was very well approximated by normal distribution (data not shown). The significance of the actual correlation of estimated as a Z-score based on the background distribution. We selected Z-score as a measure since many P-values for highly correlated marks were below computational precision and would appear as zero in the plots. Using Spearman rank correlation coefficients produced very similar results. Correlations between densities of different EZH2 and H3K27me3 sites were calculated in a similar fashion.

Estimates of Allelic Skew

Allelic skew of coverage at a given segment was analyzed by comparing allele-specific coverages at this segment. The significance of skew was estimated based on the normal distribution of effective numbers of allele-specific fragments.

Allelic skew of coverage at a given segment was analyzed by comparing allele-specific coverages at this segment. The significance of skew was estimated based on the normal distribution of effective numbers of allele-specific fragments. P-values were based on normal approximation of binomial distribution N(np, np(1−p)) where p=0.5 and n is the total effective number of fragments estimated from total coverage cov and average paired-end fragment length <L>: n=cov/<L>.

Repeat Enrichment Analysis

The significance of repeat enrichment or depletion was estimated against the distribution of RepeatMasker repeat numbers in the segments shuffled along the chromosome. Among the segments enriched for EZH2, we counted the number of segments overlapping different types of repeats defined by RepeatMasker in mm9 mouse genome. The significance of repeat enrichment or depletion was estimated against the distribution of repeat numbers in the segments shuffled along the chromosome (100 simulations).

Analysis of Coverage in Long-Range Vicinity of EZH2 Sites

The analysis of coverage trends in the megabase-scale vicinity of strong EZH2 sites was based on the coverage of 1 kb windows with 200 bp shift over the entire chromosome. For each window, the closest strong EZH2 segment was determined, and the window coverage was plotted against the distance to the closest segment. The trends of moderate site coverage around the strong sites were analyzed in a similar fashion.

Allele-Specific ChIP-qPCR

ChIPs were carried out as described above in biological triplicate for EZH2 and H3K27me3 from d0, d7 and MEF cells. Allele-specific primers were designed to discriminate at least 2 out the last 4 terminal (3′) positions of the primer annealing site, and allele-specificity was confirmed using genomic DNA from pure Cast and 129 mice. Amplification was performed using 2× iQ Sybr green (Biorad) on a CFX96 instrument (Biorad) with the following protocol: 3 min at 95° C., then 45 cycles of 15 sec at 95° C., 15 sec at 58° C. and 30 sec at 72° C. Reactions using 129- and Cast-specific primers were set up in parallel from the same ChIP DNA dilution and contained one universal primer and one of two allele-specific primers (mus for 129, cas for Cast in primer name) at 250 nM:

PRC2 Allele-specific site primers SEQUENCE SEQ ID NO: m-13: p267- GGC AGG GGT TAC TAC AGT AGA 3151 13m631musF: GTG p268-13m631casF: GGC AGG GGT TAC TAC AGT AGA 3152 GAA p269-13m631R: CAG CTC TGG GAA GGT TTT GTA 3153 TG c-13: p270-13c47F CCT GGT AGA GTC ACC TCC GGA 3154 CAG p271-13c47musR GAA CCT TTT CCC TCC AAG CCC 3155 AGA p272-13c47casR GAA CCT TTT CCC TCC AAG CCC 3156 CGC c-X1: p276-Xc10F CCT GCG ATC CGG CGC TTT G 3157 p277-Xc10musR CTC TCC CGA CCC CGC ACA CAT T 3158 p278-Xc10casR CTC TCC CGA CCC CGC ACA CGT C 3159 m-X1: p283-Xm269musF GGC TCA CAT TTG CAC TTT TTG 3160 CTA CG p284-Xm269casF GGC TCA CAT TTG CAC TTT TTG 3161 CTA AA p285-Xm269R GGG ATG AGG CGT CTG TGT TGG 3162 GTC a-X2: p286-Xa76musF CAC ATA AAA CAT CAA ACA GAA 3163 CAT GTG AGC p287-Xa76casF CAC ATA AAA CAT CAA ACA GAA 3164 CAT GTT AGA p288-Xa76R GGA CAC ACA AAT AGT GAC CTG 3165 GTG GC c-X2: p289-Xc77musF GCT TAG CGG ATT CCA TAC CCC 3166 AA p290-Xc77casF GCT TAG CGG ATT CCA TAC CCC 3167 CC p291-Xc77R GAG CAC ATT TTT AAG AAA ACC 3168 GAT GAC AG m-X2: p295-Xm2240musF GGA AGG GAA GTA ATT AAG CAA 3169 ACA CAA ACA p296-Xm2240casF GGA AGG GAA GTA ATT AAG CAA 3170 ACA CAT GG p297-Xm2240R CTC AAA GAA AAA AAA TAT CAT 3171 AAA AAC CAA ACT GTT TC Jarid1: p298-intrJarid1cF CAC TTC TTT TGT GCC TTA AGC 3172 ATT AGC p299- TCA CAC AGG TCA GAT ACA AAA 3173 intrJarid1cmusR AGT ATA GTT p300- TCA CAC AGG TCA GAT ACA AAA 3174 intrJarid1ccasR AGT ATA GCA

Example 1 Allele-Specific ChIP-seq

Mammalian PRC2 contains four core subunits, EED, SUZ12, RBAP48 (RBBP4 in mouse), and EZH2, the subunit responsible for trimethylating H3K27. Because Polycomb recruitment is a central feature of XCI (Plath et al., 2003; Silva et al., 2003; Zhao et al., 2008), we obtained allele-specific ChIP-seq profiles for EZH2 and H3K27me3 and compared them to those for activating marks, including holoenzyme POL-II-S5P (active POL-II), H3K4me3 (transcriptional initiation), and H3K36me3 (transcriptional elongation). To distinguish Xi from Xa, we used female cell lines carrying one X of Mus castaneus origin (X^(Cast)) and one of M. musculus 129 origin (X¹²⁹), and analyzed three developmental stages. First, we examined undifferentiated female ES cells (d0), which carry two Xa but recapitulate XCI during differentiation. Second, we examined differentiating ES cells on day 7 (d7), a timepoint corresponding to a mid-XCI state where ˜40% of cells are establishing XCI (FIG. 8A). Disabling the Tsix allele on X¹²⁹ (Tsix^(TST)/+)(Ogawa et al., 2008) ensured inactivation of X¹²⁹ in the ES line. Third, we examined post-XCI, clonal hybrid female mouse embryonic fibroblasts (MEF; F1,

X^(Cast)×

X¹²⁹) which have inactivated X¹²⁹. Approximately 0.6 million SNPs and insertions/deletions (indels) of ˜23 million genomewide SNPs/indels between M. castaneus and M. musculus were used to distinguish X^(Cast) and X¹²⁹ (Keane et al., 2011).

Using paired-end sequencing, 283% of all read pairs aligned uniquely and ˜36% provided allele-specific information (Table I). All tracks (Cast, 129, Composite) were first normalized to their corresponding input controls to minimize potential artifacts stemming from differential chromosome compaction, crosslinking or sonication efficiencies, with ES and MEF input data mapping proportionally to chromosome length (FIG. 8B) and equally well to both homologs of ChrX and Chr13 (FIG. 8C); this showed that experimental bias between Xi and Xa was negligible. The composite track (comp) represents total epitope abundance, whereas Cast and 129 tracks reflect relative allelic abundance and local SNP densities (see Supplemental Methods). To validate our approach, we inspected loci with established mono- or bi-allelic expression (FIG. 9). At the imprinted Dlk1-Meg3 and Zim1-Peg3 loci, allele-specific H3K4me3 and POL-II-S5P profiles were consistent with known parent-of-origin effects. At the Xist promoter, H3K4me3 and POL-II-S5P were specifically enriched on X¹²⁹ (Xi). The opposite pattern was observed at Iqsec2, a gene subject to XCI. By contrast, biallelic H3K4me3 and POL-II-S5P enrichment was seen at the neighboring Jaridlc (Kdm5c), a gene known to escape XCI (Greenfield et al., 1998; Carrel and Willard, 2005).

These results demonstrate the allele-specific nature of our ChIP-seq.

TABLE I Statistics for sequencing of input and indicated epitopes. ChIP-seq results for MEF, d0, and d7 ES cells showing all clusters and reads that are aligned, repetitive or unique, and allelic or neutral in millions and percent. celltype epitope clusters aligned unique allelic neutral MEF input 1 19.5 18.6 95% 15.5 83% 5.6 36% 9.9 64% MEF input 2 28.7 27.5 96% 23.1 84% 8.5 37% 14.6 63% MEF H3K27me3 17.9 17.0 95% 15.2 89% 5.5 36% 9.7 64% MEF EZH2 21.9 19.8 90% 16.8 85% 6.1 36% 10.7 64% MEF H3K4me3 20.4 19.4 95% 17.9 93% 5.5 31% 12.5 69% MEF H3K36me3 17.2 16.5 96% 14.4 87% 5.1 36% 9.2 64% MEF POL-II-S5 26.0 24.3 93% 21.6 89% 7.6 35% 14.0 65% ES d0 input 1 32.5 31.3 96% 26.0 83% 9.5 36% 16.5 64% ES d0 input 2 23.0 21.1 92% 18.3 87% 6.9 38% 11.4 62% ES d0 H3K27me3 27.1 25.8 95% 22.5 87% 8.1 36% 14.3 64% ES d0 EZH2 27.7 26.1 94% 21.9 84% 7.8 35% 14.2 65% ES d0 H3K4me3 25.6 23.9 93% 20.6 86% 6.5 31% 14.2 69% ES d0 H3K36me3 24.3 23.1 95% 18.9 82% 6.6 35% 12.3 65% ES d0 POL-II-S5 29.3 27.9 95% 24.4 88% 8.5 35% 16.0 65% ES d7 input 29.7 28.6 96% 23.7 83% 8.4 35% 15.3 65% ES d7 H3K27me3 30.6 28.8 94% 25.3 88% 8.6 34% 16.7 66% ES d7 EZH2 29.1 27.5 94% 23.0 84% 8.2 36% 14.8 64% ES d7 H3K4me3 26.2 24.8 95% 22.7 92% 7.1 31% 15.6 69% ES d7 H3K36me3 29.5 28.2 96% 21.6 77% 6.8 32% 14.8 68% ES d7 POL-II-S5 28.4 26.7 94% 22.6 85% 8.1 36% 14.6 64% Average 25.7 24.3 94.5%  20.8 85.7%  7.2 34.9%  13.6 65.1%  Stdev 4.4 4.3 1.5%  3.5 3.6%  1.3 2.1%  2.3 2.1% 

Example 2 Genes that Escape XCI

We used allele-specific profiles to identify genes that escape XCI by scoring H3K4me3 peaks within 3 kb of annotated transcriptional start sites (TSS) and noting allelic skews with statistical significance (p<0.05, normal approximation of binomial). Genes with significant X^(Cast) (Xa) skewing were considered monoallelic. Genes with insignificant skewing or two-allele H3K4me3 enrichment were designated biallelic. Genes lacking H3K4me3 peaks within 3 kb of annotated promoters were considered repressed (“off”). Those lacking sufficient SNP density were excluded (not determined, “n/d”). On Chr13, ˜400 out of 843 genes were biallelic, ˜300 genes were off, ˜100 were indeterminate (n/d), and few were monoallelic (FIG. 10A).

X^(Cast) skewing was evident for almost all MEF genes (FIG. 10A), consistent with the genes being subject to XCI (Carrel and Willard, 2005; Berletch et al., 2010). Eleven genes showed biallelic H3K4me3 marks (FIG. 10B,C), in excellent agreement with recent expression analysis (Yang et al., 2010). Eight out of 11 genes appeared on both lists (e.g., Utx (Kdm6a), Jarid1c). Three noncoding genes, including Jpx (Enox), Ftx (B230206F22Rik) and 5530601H04Rik (FIG. 10B), appeared only in our study, though they had been shown by others to be biallelically expressed (Johnston et al., 2002; Reinius et al., 2010; Chureau et al., 2011). These results suggest that allele-specific ChIP-seq could be an effective method of identifying monoallelically expressed genes on a genome-wide scale.

Example 3 Allelic Profiles of Xa and Xi

We then performed metagene analysis to examine average epitope densities within genes on chromosomes X (ChrX) and 13 (Chr13). In 16.7 ES cells, Chr13 was the only autosome that is fully M. castaneus for one homologue and fully 129 for the other in Tsix^(TST)/+ ES cells (other autosomes have meiotically recombined in the F1 germline). For Chr13 genes, the marks of gene activation remained relatively constant and there was little allele-specific distinction before (d0 ES), during (d7 ES), and after (MEF) XCI. On both homologues, POL-II-S5P and H3K4me3 were enriched over promoters, and H3K36me3 occurred along the gene body, as expected.

By contrast, ChrX showed dynamic changes. While X^(Cast) and X¹²⁹ profiles were similar on d0 (pre-XCI), they diverged significantly at d7 (mid-XCI) and remained distinct in MEFs (post-XCI)(FIG. 1A). Active marks (POL-11-S5P, H3K4me3, and H3K36me3) showed stereotypical enrichment on both homologues in the pre-XCI state (d0), but became substantially depleted on Xi (X¹²⁹) allele in d7 cells, dropping to about half of Xa (X^(Cast)) levels, as might be expected for a mid-XCI stage. In MEFs (post-XCI) the average composite values were reduced by ˜50% and the Xi trace flatlined, consistent with complete loss of POL-II-S5P, H3K4me3, and H3K36me3 from Xi. Conversely, EZH2 binding increased 2-fold on Xi between d0 and d7, and H3K27me3 levels increased 3-fold. On Xa (X^(Cast)), EZH2 and H3K27me3 levels stayed relatively constant. These results demonstrated de novo recruitment of EZH2 and H3K27 trimethylation en masse to X-genes during XCI. In post-XCI MEFs, however, allelic differences remained for H3K27me3 but EZH2 binding was not significantly enriched in genes on Xi over Xa. These results indicate that massive PRC2 recruitment occurs during the establishment phase of XCI, but maintenance does not require large amounts of genic PRC2, consistent with the already trimethylated state of H3K27 in post-XCI cells. It is possible that PRC2 on Xi is concentrated in nongenic regions.

We then examined whole-chromosome coverages. Allelic heatmaps displayed positional correlations between different epitopes at different timepoints, with color-coded Z-scores representing the significance of the correlation estimated using a permutation-based random model (FIG. 1B,C). In MEF (FIG. 1B), allelic profiles for Chr13 were essentially identical (colors mirrored across the diagonal) with strong positive correlations of POL-II-S5P with H3K4me3 and H3K36me3, and good anti-correlations between POL-II-S5P/H3K36me3 and H3K27me3/EZH2. However, allelic profiles for ChrX were significantly different for a number of epitopes (discordant colors across the diagonal), consistent with XCI having occurred in MEFs. To ask what happens during XCI establishment, we examined d0 and d7 ES cells (FIG. 1C). Chr13 showed almost no allelic differences for any chromatin epitope, but significant allelic deviations were seen on ChrX. First, while the positive correlation between H3K27me3 and EZH2 on Xi was significant on d0 (Z-score=15), the correlation grew very strong on d7 (Z-score=96). Second, whereas H3K27me3/EZH2 were anti-correlated with active marks on d0, they became unexpectedly positively correlated on d7. Notably, the active marks showed high correlation between d0 and d7, suggesting that their density maps did not change dramatically. This dynamic of active versus repressive marks raised the intriguing possibility that, during XCI, EZH2 and H3K27me3 appear in domains marked by active POL-II and H3K4me3. This feature was Xi-specific, and absent on Xa and Chr13.

Example 4. Strong EZH2 recruiting sites on Xi are bivalent domains Chromatin regions marked concurrently by H3K4me3 and H3K27me3 have been termed ‘bivalent domains’, typically associated with transcriptionally poised developmental genes in ES cells (Bernstein et al., 2006). In undifferentiated ES cells, CpG islands associated with bivalent domains account for most EZH2 sites (Ku et al., 2008), and H3K27me3 is rarely detected in the absence of H3K4me3 (Mikkelsen et al., 2007). We asked if EZH2 localization and H3K27me3 followed similar patterns on ChrX during XCI. On d0, most ‘strong’ EZH2 sites—defined as sites with significant EZH2 ChIP-seq coverage (p<10⁻⁵ according to a permutation-based random model)—were often found within canonical bivalent domains (FIG. 2A), frequently coinciding with CpG islands (striped), as well as a few that were solely H3K27me3-marked. This was true for both ChrX and Chr13 and consistent with previous reports (Bernstein et al., 2006; Mikkelsen et al., 2007; Ku et al., 2008).

However, during cell differentiation and XCI, the chromatin composition and number of strong EZH2 sites diverged dramatically between ChrX and Chr13. On Chr13, 20 out of 79 of d0 EZH2 sites were lost and few new EZH2 sites were acquired (30). Almost all d7 sites were still bivalent domains associated with CpG islands (FIG. 2A). On the other hand, ChrX lost very few sites (8/48) and a large number (>100) of new EZH2 sites was acquired on d7. In contrast to constant sites, many acquired sites on ChrX were neither bivalent nor CpG islands. Among acquired sites, about half were already marked weakly by H3K27me3 on d0 but were below the significance cutoff for EZH2: the rest was previously marked solely by H3K4me3 or unmarked by either epitope (FIG. 2A, sidebar). Interestingly, strong EZH2 sites on both Chr13 and ChrX showed changes in widths of the sites, EZH2 densities, and H3K27me3 densities (FIG. 2B), which suggest a genome-wide increase in PRC2 activity from d0 and d7. Acquired sites on ChrX, however, may be key regulators of XCI, because they appear primarily on Xi during differentiation, as shown by allelic skewing of coverage (FIG. 2C).

Therefore, ChrX and Chr13 differed in several respects during XCI. First, ChrX gained a large number of EZH2 sites. Second, EZH2 binding on ChrX was allelically skewed (to future Xi). Third, whereas acquired and constant Chr13 sites were mostly bivalent, only about half of acquired X-linked sites were bivalent before XCI. Fourth, acquired sites on ChrX experienced larger increases in EZH2 and H3K27me3 densities than on Chr13. Given that many new EZH2 sites did not conform to the established paradigm of being bivalent, we suspected that non-canonical EZH2-binding sites may be central to the spread of XCI.

Example 5 Non-Canonical EZH2 Sites on Xi for Spreading

In light of de novo recruitment of non-canonical sites and the finding that many such sites were already weakly H3K27me3-positive (but below cutoff) on d0, we asked whether we might find additional functional EZH2 sites by relaxing the EZH2 enrichment threshold (FIG. 11A). We also noted that, although chromosome-wide coverages of EZH2 and H3K27me3 were greater for ChrX than Chr13 (d7), the cumulative coverages over strong sites accounted for a small fraction of total and were actually less for ChrX than Chr13 (FIG. 2D). By relaxing the cutoff to a density of >3/bp over a 1 kb window (equivalent top <0.03 according to random model) and excluding strong EZH2 sites (p<10⁻⁵), we observed a large number of previously undetected sites, almost all of which were neither bivalent domains nor CpG islands (FIG. 3A). On ChrX, such ‘moderate’ or ‘non-canonical’ sites numbered at ˜1500 on d0 and grew to ˜4000 during XCI (d7). Moderate sites greatly exceeded strong sites in number and were mostly intergenic (˜⅔, data not shown). Allelic profiles showed that the greatest gain occurred on X¹²⁹ (Xi) FIG. 3B). Although non-canonical sites also occurred on Chr13, their number was smaller and remained constant during cell differentiation. Furthermore, Chr13 sites showed little evidence of productive H3K27 trimethylation, whereas moderate ChrX sites were almost exclusively H3K27me3-marked (FIG. 3A,C). In fact, moderate sites on ChrX represented the lion's share of EZH2 activity during XCI. EZH2 and H3K27me3 levels summed over moderate sites far exceeded those over strong sites (FIG. 2D, left panel). The greatest change in H3K27me3 coverage between d0 and d7 was observed on these non-canonical sites (FIG. 2D, 3C, right panel). Taken together, these data indicate that massive acquisition of non-canonical EZH2 sites—both strong and moderate—defines XCI, and that non-canonical EZH2 sites (rather than bivalent sites) distinguish Xi from Xa and from autosomes. Though both bivalent and non-canonical sites are recruited during XCI, the latter best reflects the XCI-specific spread of PRC2 during cell differentiation.

Next, we experimentally validated the bioinformatically defined strong and moderate sites by performing allele-specific ChIP-qPCR on select loci from Chr13 and ChrX in d0/d7 ES cells and in MEF (FIG. 12, 13). Analysis of strong (constant and acquired) sites and moderate sites, revealed clear concordance between the ChIP-seq and ChIP-qPCR results for all tested epitopes, including EZH2, H3K27me3, and H3K4me3. First, strong sites (c-13, c-X1, c-X2) showed significantly greater enrichment by ChIP-qPCR than nearby moderate sites (m-13, m-X1, m-X2)(p<0.05, one-tailed Mann-Whitney U test). Second, allelic differences observed by ChIP-seq were reproduced by allelic-specific ChIP-qPCR. Finally, results from three biological replicates were consistent and showed significantly higher EZH2 and H3K27me3 binding at both strong and moderate sites than observed for an IgG pulldown control and the negative control escapee locus, Jaridlc (FIG. 13, * p<0.05, one-tailed Mann-Whitney U test). Thus, the ChIP-qPCR results validated our general approach to allele-specific ChIP-seq analysis.

To assess local spreading at strong and moderate sites, we plotted average EZH2 and H3K27me3 densities at binding sites ±20 kb of flanking sequence (FIG. 3D), with EZH2 sites being scaled from 0 to 1 between its start (S) and end (E) (metasite profile). On d0, no allelic differences were observed on ChrX and Chr13. On d7, strong allelic skew was observed on ChrX at both strong and moderate sites, and EZH2 and H3K27me3 densities were consistently greater on X¹²⁹ (Xi) than on X^(Cast) (Xa), as expected. Interestingly, a flipped allelic skew was observed for strong sites in MEFs, occurring only in EZH2 levels and not in H3K27me3 levels. This is consistent with the notion that maintenance of H3K27me3 levels after the establishment of XCI requires only low levels of EZH2 at strong sites; on Xa, by contrast, higher levels of EZH2 may be continuously required for dynamic responses in X-linked gene expression. Most intriguingly, however, changes in EZH2 and H3K27me3 densities on d7 were greater at moderate than strong X-linked sites and occurred not only within the sites but also across >20 kb of flanking sequence bi-directionally (FIG. 3D), supporting the idea that non-canonical moderate sites are central to spreading of XCI.

Example 6 Relationship of EZH2 Sites to Repetitive Elements

We investigated whether the PRC2 sites share underlying sequence motifs. Given hypothesized roles for repetitive elements in spreading (Bailey et al., 2000; Lyon, 2000; Wang et al., 2006; Chow et al., 2010), we examined correlations with repeat classes (FIG. 4). Our paired-end sequencing approach enabled unique alignments of a large number of repeat-containing reads by virtue of being paired with a non-repetitive read. Strong sites were generally enriched in low-complexity repeats (d0, d7)(Z>2.5, permutation-based random model) and simple repeats (d7), but most simple repeats were GC-rich motifs typically found at CpG islands and bivalent domains (FIG. 4A,B; Tables II, III)(Ku et al., 2008). Short interspersed nuclear elements (SINE), long interspersed nuclear elements (LINE), and long-terminal repeats (LTR) were significantly under-represented. (TC)n and (TG)n repeats were over-represented specifically on ChrX, but <20% of strong EZH2 sites contained such repeats. Because flanking regions may play a role in spreading, we examined 3-kb flanks to either side of a strong site. Again, low-complexity and simple repeats were over-represented, and LINE1 and LTR were under-represented on both ChrX and Chr13 (FIG. 4A,C; Tables II, III). However, SINEs as a class were 1.7-fold enriched on ChrX in flanking regions, with enrichment occurring in >80% of flanking regions. This enrichment correlated with progression through XCI from d0 to d7. Moderate EZH2 sites similarly showed under-representation of LINE Is and LTRs, and modest over-representation of SINEs, low-complexity, and simple repeats (FIG. 4A,D; Tables II, III).

We performed similar analyses with known transcription factor consensus motifs. Several motifs were over-represented in EZH2 sites, but none were significantly enriched over a random model that took into account CpG content and proximity to gene promoters. De novo motif discovery using MEME (Bailey et al., 2006) retrieved only simple and low-complexity motifs, consistent with our repeat analysis. Taken together, while these data do not exclude a role for LINEs in other aspects of XCI (Chow et al., 2010; Namekawa et al., 2010), they do not support a direct role of LINEs in spreading EZH2. Positive association is instead seen for SINEs, low-complexity, and simple repeats.

TABLE II Enriched and depleted repeat classes at EZH2 sites Repeat classes significantly enriched or depleted at strong, strong-flanking (+/−3 kb) and moderate sites on d0, d7 and MEF are listed with odds ratios (inverted negative for depleted classes) and percentage of EZH2 sites containing (in case of enriched) or lacking (in case of depleted) a given repeat class Only significantly enriched or depleted (Z ≧ 2.5) classes are listed with percentage, all others (Z < 2.5) are set to 0.0%. % of MEF % d0 odds % d0 d7 odds d7 odds of MEF ratio sites ratio sites ratio sites chr13-strong Non-repeat 1.8 0.0 3.4 17.3 1.8 0.0 DNA −5.0 94.9 −5.3 95.1 −3.1 0.0 transposon LINE −17.4 92.4 −17.5 90.1 −14.2 90.4 LTR −28.3 94.9 −16.6 90.1 −15.1 91.6 Low_complexity 2.6 60.8 2.1 51.9 2.1 56.6 Others −2.2 0.0 −8.9 0.0 −1.6 0.0 SINE −5.1 75.9 −3.9 74.1 −2.3 62.7 Simple_repeat 1.2 0.0 1.2 0.0 1.1 0.0 chrX-strong Non-repeat 5.5 23.2 2.7 12.9 3.1 14.0 DNA −4.4 0.0 −1.8 3.0 −68.6 0.0 transposon LINE −15.9 92.9 −5.5 78.9 −16.4 90.0 LTR −13.8 94.6 −8.2 91.2 −38.3 98.0 Low_complexity 1.7 46.4 1.7 39.5 2.1 52.0 Others −45.4 0.0 −2.8 3.0 −34.6 0.0 SINE −4.1 78.6 −1.7 58.5 −4.0 82.0 Simple_repeat 1.4 0.0 1.6 64.6 1.6 58.0 d0 odds d7 odds MEF odds ratio ratio ratio chr13-flanking Non-repeat −2.0 1.3 −1.6 DNA −1.5 −1.5 1.1 transposon LINE −3.5 −2.4 −2.4 LTR −3.4 −2.0 −2.2 Low_complexity 1.5 1.6 1.2 Others −1.0 −2.8 1.2 SINE −1.1 1.2 1.2 Simple_repeat 1.4 1.4 1.4 chrX-flanking Non-repeat −1.0 −1.8 1.8 DNA −1.0 1.4 −1.2 transposon LINE −3.9 −2.1 −3.9 LTR −3.4 −2.2 −2.9 Low_complexity 1.4 1.3 1.4 Others −1.5 −1.1 −1.4 SINE 1.2 1.7 1.3 Simple_repeat 1.6 1.5 1.5 chr13-moderate Non-repeat −1.2 −1.1 −1.1 DNA −1.1 −1.3 1.1 transposon LINE −1.2 −1.6 −1.6 LTR −1.4 −1.5 −1.6 Low_complexity 1.4 1.4 1.6 Others −1.2 −1.4 −1.3 SINE −1.1 −1.0 −1.1 Simple_repeat 1.1 1.2 1.3 chrX-moderate Non-repeat −1.4 −1.3 −1.2 DNA −1.1 1.3 1.2 transposon LINE −1.1 −1.2 −1.1 LTR −1.2 −1.2 −1.3 Low_complexity 1.4 1.2 1.5 Others −1.5 −1.3 −1.3 SINE −1.0 1.4 1.1 Simple_repeat 1.2 1.3 1.2

TABLE III Enriched and depleted repeat types at EZH2 sites Repeat types significantly enriched or depleted at strong, strong-flanking (+/−3 kb) and moderate sites on d0, d7 and MEF are listed with odds ratios (inverted negative for depleted classes) and percentage of EZH2 sites containing (in case of enriched) or lacking (in case of depleted) a given repeat class. Only significantly enriched or depleted (Z ≧ 2.5) classes are listed with percentage, all others (Z < 2.5) are set to 0.0%. Type d0 odds ratio % d0 sites d7 odds ratio % of d7 sites MEF odds ratio % of MEF sites chr13-strong non-Repeat . 1.8 0.0 3.4 17.3 1.8 0.0 L1Md_F2 LINE −90.1 100.0 −109.7 100.0 −82.2 0.0 Lx8 LINE −83.2 0.0 −10.3 0.0 −6.6 0.0 C-rich Low_complexity 12.3 12.7 10.4 13.6 8.2 6.0 GA-rich Low_complexity 2.8 16.5 2.6 17.3 1.9 0.0 GC-rich Low_complexity 36.3 29.1 27.9 28.4 42.8 33.7 G-rich Low_complexity 8.9 8.9 10.9 11.1 3.1 0.0 T-rich Low_complexity 3.7 7.6 2.5 0.0 1.1 0.0 B3 SINE −12.8 98.7 −9.5 97.5 −6.0 97.6 B4A SINE −126.1 100.0 −165.0 100.0 −10.9 98.8 RSINE1 SINE −122.5 100.0 −5.4 97.5 −112.8 100.0 (A)n Simple_repeat 2.7 10.1 1.8 0.0 2.2 0.0 (CCG)n Simple_repeat 18.6 5.1 25.5 6.2 22.8 4.8 (CGG)n Simple_repeat 18.2 3.8 13.5 3.7 16.2 2.4 (CGGGG)n Simple_repeat 7.3 1.3 6.9 1.2 8.5 1.2 (GA)n Simple_repeat 2.0 13.9 1.8 12.3 1.3 0.0 (TA)n Simple_repeat −2.5 0.0 −2.4 0.0 −3.5 0.0 (TC)n Simple_repeat 1.6 0.0 1.1 0.0 −1.5 0.0 (TG)n Simple_repeat −1.3 0.0 −1.1 0.0 1.1 0.0 chrX-strong non-Repeat . 5.5 23.2 2.7 12.9 3.1 14.0 L1Md_F2 LINE −113.1 100.0 −7.0 98.0 −8.2 0.0 Lx8 LINE −63.1 0.0 −7.4 99.3 −4.3 0.0 C-rich Low_complexity 23.2 8.9 23.1 7.5 22.2 10.0 GA-rich Low_complexity 2.7 0.0 2.3 5.4 2.8 0.0 GC-rich Low_complexity 43.5 23.2 53.9 17.0 46.8 22.0 G-rich Low_complexity 5.8 1.8 5.7 1.4 7.3 2.0 T-rich Low_complexity −1.2 0.0 −1.4 0.0 1.2 0.0 B3 SINE −3.7 0.0 −2.0 0.0 −1.9 0.0 B4A SINE −43.0 0.0 −9.7 99.3 −2.9 0.0 RSINE1 SINE −5.2 0.0 −2.8 0.0 −3.8 0.0 (A)n Simple_repeat 2.9 0.0 1.4 0.0 3.0 0.0 (CCG)n Simple_repeat 17.5 3.6 57.6 6.8 54.6 14.0 (CGG)n Simple_repeat 25.8 3.6 72.1 5.4 73.6 12.0 (CGGGG)n Simple_repeat 9.2 1.8 40.7 3.4 10.0 2.0 (GA)n Simple_repeat 2.6 10.7 2.3 8.8 1.5 0.0 (TA)n Simple_repeat −4.6 0.0 −11.4 99.3 −36.1 0.0 (TC)n Simple_repeat 1.7 0.0 2.4 10.9 −2.0 0.0 (TG)n Simple_repeat 1.2 0.0 1.7 15.0 1.1 0.0 chr13-flanking L1_Mm LINE −36.1 0.0 −3.3 0.0 −3.4 0.0 L1_Mus1 LINE −2.8 0.0 −1.5 0.0 −5.6 0.0 L1MB5 LINE 4.6 0.0 5.7 1.2 5.7 2.4 L1Md_A LINE −1.9 0.0 −40.4 0.0 −3.7 0.0 L1Md_F2 LINE −140.2 100.0 −6.9 98.8 −13.5 98.8 L1Md_T LINE −5.9 0.0 −66.7 100.0 −3.3 0.0 L1MEf LINE −9.5 0.0 −9.8 0.0 −9.9 0.0 C-rich Low_complexity 4.0 6.3 3.1 4.9 1.5 0.0 CT-rich Low_complexity 1.6 0.0 1.7 0.0 1.3 0.0 GA-rich Low_complexity −1.1 0.0 −1.0 0.0 1.1 0.0 GC-rich Low_complexity 9.7 12.7 6.0 8.6 −1.1 0.0 B1_Mur1 SINE 1.5 0.0 2.3 12.3 1.0 0.0 B1_Mur3 SINE 1.4 0.0 2.7 9.9 1.3 0.0 B1F SINE −2.0 0.0 −1.0 0.0 1.1 0.0 B1F1 SINE −3.2 0.0 −3.2 0.0 1.1 0.0 B2_Mm1a SINE 1.1 0.0 1.4 0.0 2.8 8.4 ID_B1 SINE 1.7 0.0 1.6 0.0 1.3 0.0 ID4 SINE 1.8 0.0 −1.1 0.0 1.7 0.0 MIR SINE 1.7 0.0 2.5 16.0 2.5 14.5 MIRb SINE 2.0 13.9 2.7 16.0 2.1 14.5 MIRc SINE 4.0 12.7 1.8 0.0 4.2 14.5 PB1 SINE 1.7 0.0 1.2 0.0 −1.2 0.0 PB1D10 SINE 1.2 0.0 1.6 0.0 1.1 0.0 RSINE1 SINE −1.7 0.0 −1.7 0.0 1.0 0.0 (CA)n Simple_repeat 1.7 41.8 1.4 0.0 1.6 47.0 (CAGAGA)n Simple_repeat 1.8 0.0 1.7 0.0 3.3 4.8 (CCA)n Simple_repeat 2.5 0.0 3.7 3.7 6.1 6.0 (CCG)n Simple_repeat 12.4 1.3 4.4 0.0 −2.5 0.0 (GGA)n Simple_repeat 3.2 5.1 1.6 0.0 2.3 0.0 (T)n Simple_repeat 2.7 15.2 1.9 0.0 2.4 14.5 (TCTG)n Simple_repeat 2.3 0.0 2.8 6.2 3.3 6.0 (TG)n Simple_repeat 1.3 0.0 1.5 42.0 1.2 0.0 (TTTTG)n Simple_repeat 1.6 0.0 2.2 0.0 1.6 0.0 chrX-flanking L1_Mm LINE −48.1 0.0 −129.4 100.0 −41.9 0.0 L1_Mus1 LINE −2.3 0.0 −4.0 96.6 −2.7 0.0 L1MB5 LINE 1.5 0.0 5.7 2.7 1.6 0.0 L1Md_A LINE −61.2 0.0 −161.6 100.0 −54.5 0.0 L1Md_F2 LINE −3.8 92.9 −3.7 91.2 −2.3 0.0 L1Md_T LINE −7.8 0.0 −7.1 98.0 −3.7 0.0 L1MEf LINE 3.6 0.0 4.5 1.4 −4.9 0.0 C-rich Low_complexity 5.1 3.6 11.8 6.1 13.8 8.0 CT-rich Low_complexity 2.0 0.0 1.9 10.9 2.3 0.0 GA-rich Low_complexity 1.3 0.0 2.5 10.9 2.2 0.0 GC-rich Low_complexity 23.5 12.5 7.7 5.4 9.1 6.0 B1_Mur1 SINE 1.3 0.0 2.1 11.6 1.7 0.0 B1_Mur3 SINE −23.7 0.0 2.3 7.5 1.5 0.0 B1F SINE −1.1 0.0 2.1 18.4 2.0 0.0 B1F1 SINE 1.5 0.0 2.3 8.8 1.3 0.0 B2_Mm1a SINE −1.2 0.0 1.8 0.0 2.7 0.0 ID_B1 SINE −1.0 0.0 2.0 25.9 2.1 24.0 ID4 SINE −1.5 0.0 2.3 12.2 2.5 12.0 MIR SINE 1.8 0.0 2.0 16.3 2.3 20.0 MIRb SINE 2.2 17.9 2.5 21.1 1.7 0.0 MIRc SINE 3.1 10.7 3.1 10.9 2.1 0.0 PB1 SINE 2.7 0.0 3.0 8.8 3.5 10.0 PB1D10 SINE 2.1 19.6 2.0 21.1 1.2 0.0 RSINE1 SINE 1.7 0.0 1.7 24.5 1.1 0.0 (CA)n Simple_repeat 1.3 0.0 1.1 0.0 1.0 0.0 (CAGAGA)n Simple_repeat −10.4 0.0 8.9 2.7 −9.6 0.0 (CCA)n Simple_repeat 3.6 0.0 4.7 4.1 −5.5 0.0 (CCG)n Simple_repeat 29.0 8.9 6.0 1.4 11.7 2.0 (GGA)n Simple_repeat 3.4 0.0 5.1 4.1 2.0 0.0 (T)n Simple_repeat 2.1 0.0 1.2 0.0 2.4 0.0 (TCTG)n Simple_repeat −6.1 0.0 2.4 0.0 1.9 0.0 (TG)n Simple_repeat 2.5 51.8 1.6 34.0 2.3 44.0 (TTTTG)n Simple_repeat −2.2 0.0 2.2 8.2 3.2 12.0 chr13-moderate non-Repeat . −1.2 0.0 −1.1 0.0 −1.1 0.0 MER5B DNA 1.5 0.0 1.1 0.0 1.0 0.0 Tigger5 DNA 1.1 0.0 1.5 0.0 −36.4 0.0 HAL1-3A_ME LINE −2.4 0.0 −1.2 0.0 −1.3 0.0 L1_Mm LINE 1.1 0.0 −2.2 0.0 −3.6 0.0 L1_Mur1 LINE −1.6 0.0 −2.4 0.0 −3.3 0.0 L1_Mur2 LINE −2.3 0.0 −1.7 0.0 −1.3 0.0 L1_Mur3 LINE −1.0 0.0 −1.6 0.0 −1.9 0.0 L1_Mus3 LINE −1.8 0.0 −2.1 98.9 −1.1 0.0 L1MC1 LINE 1.1 0.0 −1.4 0.0 1.5 0.0 L1Md_A LINE −1.8 0.0 −6.9 99.7 −6.8 99.7 L1Md_F LINE −1.3 0.0 −1.6 0.0 −45.5 0.0 L1Md_F2 LINE 1.1 0.0 −2.1 97.0 −2.6 97.8 L1Md_T LINE −1.4 0.0 −4.8 99.3 −4.6 99.3 L1MD1 LINE −2.6 0.0 1.2 0.0 −17.0 0.0 L1ME4a LINE 3.5 0.3 2.3 0.0 1.1 0.0 L1VL1 LINE 1.1 0.0 −28.2 0.0 1.1 0.0 L1VL2 LINE 1.4 0.0 −1.2 0.0 −2.9 0.0 L1VL4 LINE −2.5 0.0 −1.7 0.0 −2.3 0.0 L2a LINE 1.1 0.0 −1.2 0.0 −1.8 0.0 L2b LINE 1.3 0.0 1.4 0.0 1.1 0.0 AT_rich Low_complexity 1.0 0.0 1.0 0.0 1.1 0.0 C-rich Low_complexity 3.6 1.6 4.2 1.8 3.2 1.3 CT-rich Low_complexity 1.2 0.0 1.4 0.0 1.2 0.0 G-rich Low_complexity 2.6 1.1 2.8 1.2 2.1 0.0 GA-rich Low_complexity 1.3 0.0 1.1 0.0 1.9 5.7 GC-rich Low_complexity 9.9 3.9 12.9 4.6 17.4 5.9 polypyrimidine Low_complexity 1.6 0.0 1.4 0.0 1.7 0.0 T-rich Low_complexity 1.5 0.0 1.4 0.0 2.3 2.2 ETnERV2-int LTR −7.1 0.0 −1.6 0.0 −42.3 0.0 ETnERV3-int LTR −16.5 0.0 −14.4 0.0 −9.2 0.0 IAPEz-int LTR −1.7 0.0 −6.1 0.0 −8.0 0.0 MER89 LTR 1.6 0.0 −12.2 0.0 −8.4 0.0 MMETn-int LTR −41.0 0.0 −3.6 0.0 −24.9 0.0 MTB_Mm-int LTR −1.0 0.0 −9.3 0.0 −6.4 0.0 RLTR16 LTR 1.2 0.0 −31.1 0.0 1.7 0.0 RLTR26 LTR −1.0 0.0 1.9 0.0 −1.0 0.0 RMER21B LTR 1.3 0.0 −1.2 0.0 1.5 0.0 RMER1C Other −1.1 0.0 −1.8 0.0 −2.2 0.0 5S rRNA 2.1 0.0 −9.1 0.0 −5.8 0.0 (A)n Simple_repeat 1.5 0.0 1.9 4.1 1.6 0.0 (ATG)n Simple_repeat −2.1 0.0 1.6 0.0 −13.6 0.0 (CA)n Simple_repeat 1.1 0.0 1.2 0.0 1.2 0.0 (CACCC)n Simple_repeat 1.8 0.0 1.1 0.0 1.4 0.0 (CAG)n Simple_repeat 1.6 0.0 2.2 0.0 −1.1 0.0 (CAT)n Simple_repeat −1.5 0.0 1.2 0.0 −1.6 0.0 (CCA)n Simple_repeat 1.3 0.0 2.0 0.0 2.5 0.0 (CCAA)n Simple_repeat −1.3 0.0 1.0 0.0 1.4 0.0 (CCCCCA)n Simple_repeat 3.1 0.6 1.6 0.0 3.3 0.0 (CCCCCT)n Simple_repeat 2.8 0.0 3.4 0.3 3.6 0.0 (CCCCG)n Simple_repeat 11.0 0.7 8.5 0.6 12.4 0.8 (CCG)n Simple_repeat 12.1 0.9 13.7 1.0 22.4 1.2 (CG)n Simple_repeat 5.9 0.3 6.0 0.4 5.4 0.3 (CGG)n Simple_repeat 5.1 0.3 8.0 0.5 10.8 0.5 (CGGGG)n Simple_repeat 9.5 0.3 11.4 0.4 7.5 0.3 (CGTG)n Simple_repeat −1.0 0.0 2.3 0.0 1.6 0.0 (CTG)n Simple_repeat 1.7 0.0 3.3 0.5 4.1 0.5 (GA)n Simple_repeat 1.4 5.2 1.3 0.0 1.6 5.9 (GAGAA)n Simple_repeat 4.0 0.6 2.2 0.0 2.1 0.0 (GGA)n Simple_repeat 1.8 0.0 1.4 0.0 −1.2 0.0 (T)n Simple_repeat 1.8 3.6 1.9 3.7 1.7 3.2 (TA)n Simple_repeat −1.3 0.0 −1.4 0.0 1.0 0.0 (TC)n Simple_repeat 1.2 0.0 1.1 0.0 1.3 0.0 (TCC)n Simple_repeat 1.2 0.0 1.2 0.0 −1.2 0.0 (TCCCC)n Simple_repeat 1.3 0.0 2.3 0.0 2.3 0.0 (TG)n Simple_repeat 1.0 0.0 1.1 0.0 1.2 0.0 (TGG)n Simple_repeat 3.0 1.0 2.8 1.0 1.8 0.0 (TGGGGG)n Simple_repeat 2.4 0.0 2.1 0.0 1.6 0.0 (TTTA)n Simple_repeat 1.4 0.0 1.4 0.0 −1.1 0.0 (TTTTC)n Simple_repeat 1.1 0.0 1.2 0.0 −1.8 0.0 B1_Mm SINE −1.2 0.0 1.3 0.0 −1.2 0.0 B1_Mur3 SINE 1.1 0.0 1.1 0.0 −1.3 0.0 B1_Mur4 SINE −1.1 0.0 1.1 0.0 −1.0 0.0 B1_Mus1 SINE 1.1 0.0 −1.1 0.0 −1.4 0.0 B1_Mus2 SINE 1.1 0.0 −1.1 0.0 −1.2 0.0 B1F SINE −1.2 0.0 1.1 0.0 1.0 0.0 B1F1 SINE −1.7 0.0 −1.1 0.0 −1.7 0.0 B2_Mm2 SINE −1.1 0.0 −1.3 0.0 −1.1 0.0 B3 SINE −1.4 93.2 −1.0 0.0 −1.1 0.0 B3A SINE −1.1 0.0 −1.0 0.0 −1.2 0.0 B4A SINE −1.2 0.0 −1.3 0.0 −1.0 0.0 ID SINE −1.3 0.0 −1.1 0.0 −1.2 0.0 ID_B1 SINE −1.1 0.0 1.3 0.0 1.0 0.0 ID4 SINE 1.7 2.8 1.0 0.0 −1.1 0.0 ID4_b SINE −1.3 0.0 −1.2 0.0 −1.6 0.0 MamSINE1 SINE −3.9 0.0 −4.0 0.0 3.8 0.0 MIR SINE 1.3 0.0 −1.1 0.0 1.2 0.0 MIR3 SINE −1.1 0.0 1.5 0.0 −1.7 0.0 MIRb SINE 1.0 0.0 −1.2 0.0 −1.4 0.0 MIRc SINE 1.1 0.0 1.2 0.0 1.4 0.0 MIRm SINE 1.3 0.0 2.2 1.1 2.5 0.0 PB1 SINE 1.0 0.0 1.3 0.0 −1.8 0.0 PB1D10 SINE −1.2 0.0 −1.0 0.0 −1.1 0.0 PB1D7 SINE −1.2 0.0 1.2 0.0 1.2 0.0 PB1D9 SINE −1.1 0.0 −1.3 0.0 −1.4 0.0 RSINE1 SINE −1.2 0.0 −1.2 0.0 −1.4 0.0 tRNA-Ala-GCA tRNA 1.2 0.0 −7.6 0.0 −5.8 0.0 tRNA-Ala-GCY tRNA −2.1 0.0 2.0 0.0 −1.2 0.0 chrX-moderate non-Repeat . −1.4 96.4 −1.3 95.8 −1.2 0.0 MER5B DNA −1.1 0.0 1.9 0.9 1.3 0.0 Tigger5 DNA −1.3 0.0 −1.1 0.0 3.0 0.4 HAL1-3A_ME LINE 1.5 0.0 1.2 0.0 3.1 0.7 L1_Mm LINE −1.4 0.0 −2.0 98.7 −1.9 98.7 L1_Mur1 LINE −1.1 0.0 −2.8 99.6 −1.4 0.0 L1_Mur2 LINE −1.1 0.0 −2.0 98.8 −1.3 0.0 L1_Mur3 LINE −1.1 0.0 −1.6 98.1 1.1 0.0 L1_Mus3 LINE −1.4 0.0 −1.9 97.8 −1.9 97.9 L1MC1 LINE −1.5 0.0 1.1 0.0 3.3 0.6 L1Md_A LINE −1.5 0.0 −2.8 98.6 −3.1 99.0 L1Md_F LINE −1.4 0.0 −2.0 99.2 −1.1 0.0 L1Md_F2 LINE 1.1 0.0 −1.5 91.7 −1.7 93.1 L1Md_T LINE −1.1 0.0 −3.4 98.5 −2.6 98.2 L1MD1 LINE 3.6 0.3 −1.5 0.0 1.5 0.0 L1ME4a LINE 1.0 0.0 2.1 0.3 −1.8 0.0 L1VL1 LINE −3.6 0.0 −2.6 99.8 −1.0 0.0 L1VL2 LINE −1.9 0.0 −2.1 99.6 −2.3 0.0 L1VL4 LINE −1.1 0.0 −1.8 99.3 −1.9 0.0 L2a LINE −1.4 0.0 1.5 2.8 1.4 0.0 L2b LINE −1.4 0.0 1.7 1.2 1.3 0.0 AT-rich Low_complexity 1.1 0.0 −1.2 87.0 1.3 15.3 C-rich Low_complexity 7.8 1.4 4.0 0.7 4.8 0.8 CT-rich Low_complexity 1.5 3.2 1.7 3.3 1.1 0.0 G-rich Low_complexity 10.4 1.2 4.2 0.6 4.0 0.4 GA-rich Low_complexity 1.8 3.5 1.8 3.5 1.6 1.8 GC-rich Low_complexity 13.9 2.1 9.9 1.7 17.5 2.1 polypyrimidine Low_complexity 3.3 0.3 1.3 0.0 2.9 0.0 T-rich Low_complexity 1.4 0.0 1.1 0.0 1.6 0.0 ETnERV2-int LTR −5.0 99.8 −3.1 99.7 −4.2 0.0 ETnERV3-int LTR −2.3 0.0 −174.2 100.0 −46.8 0.0 IAPEz-int LTR −3.1 0.0 −7.6 99.9 −132.8 100.0 MER89 LTR 1.9 0.0 5.1 0.1 −4.3 0.0 MMETn-int LTR −2.4 0.0 −17.6 100.0 −1.7 0.0 MTB_Mm-int LTR −4.4 0.0 6.9 0.1 −3.4 0.0 RLTR16 LTR 4.5 0.2 1.3 0.0 1.1 0.0 RLTR26 LTR −1.7 0.0 1.1 0.0 3.3 0.7 RMER21B LTR 4.1 0.2 1.9 0.0 1.3 0.0 RMER1C Other −1.6 0.0 −3.2 99.7 −2.0 0.0 5S rRNA −13.2 0.0 3.3 0.2 −9.3 0.0 (A)n Simple_repeat 1.6 2.4 1.3 0.0 1.6 0.0 (ATG)n Simple_repeat 3.0 0.4 −1.1 0.0 −1.5 0.0 (CA)n Simple_repeat 1.2 0.0 1.3 9.2 1.3 0.0 (CACCC)n Simple_repeat 3.5 0.0 3.8 0.2 4.0 0.0 (CAG)n Simple_repeat 3.6 0.4 3.2 0.4 −1.2 0.0 (CAT)n Simple_repeat 1.4 0.0 2.4 0.3 −1.2 0.0 (CCA)n Simple_repeat 1.2 0.0 1.6 0.0 2.6 0.6 (CCAA)n Simple_repeat 1.9 0.0 2.7 0.3 1.8 0.0 (CCCCCA)n Simple_repeat 1.2 0.0 −1.0 0.0 −6.2 0.0 (CCCCCT)n Simple_repeat 1.8 0.0 5.1 0.2 2.7 0.0 (CCCCG)n Simple_repeat 10.7 0.2 8.1 0.1 8.4 0.2 (CCG)n Simple_repeat 11.4 0.6 12.0 0.6 18.5 0.8 (CG)n Simple_repeat 6.5 0.3 4.5 0.2 8.4 0.3 (CGG)n Simple_repeat 13.3 0.5 13.3 0.5 17.8 0.6 (CGGGG)n Simple_repeat 12.4 0.3 10.7 0.2 12.8 0.3 (CGTG)n Simple_repeat −5.1 0.0 7.1 0.2 2.6 0.0 (CTG)n Simple_repeat 2.2 0.0 4.6 0.4 4.0 0.4 (GA)n Simple_repeat 1.4 4.1 1.6 4.7 1.5 0.0 (GAGAA)n Simple_repeat −1.7 0.0 −1.3 0.0 2.6 0.0 (GGA)n Simple_repeat 1.7 0.0 2.6 0.7 2.7 0.7 (T)n Simple_repeat 1.7 2.7 1.4 2.2 1.3 0.0 (TA)n Simple_repeat −1.0 0.0 −1.6 96.9 −1.2 0.0 (TC)n Simple_repeat 1.5 4.5 1.6 5.1 1.3 0.0 (TCC)n Simple_repeat 1.6 0.0 2.4 0.7 3.0 0.7 (TCCCC)n Simple_repeat 1.4 0.0 3.7 0.1 2.2 0.0 (TG)n Simple_repeat 1.2 8.7 1.4 9.8 1.1 0.0 (TGG)n Simple_repeat 1.7 0.0 1.6 0.0 −1.2 0.0 (TGGGGG)n Simple_repeat 2.4 0.0 3.5 0.1 1.9 0.0 (TTTA)n Simple_repeat 2.0 1.8 −1.1 0.0 1.5 0.0 (TTTTC)n Simple_repeat −2.2 0.0 2.2 0.6 1.3 0.0 B1_Mm SINE −1.1 0.0 1.3 3.4 1.1 0.0 B1_Mur3 SINE −1.1 0.0 1.5 2.0 1.2 0.0 B1_Mur4 SINE −1.1 0.0 1.6 3.3 −1.2 0.0 B1_Mus1 SINE −1.0 0.0 1.4 7.6 1.2 0.0 B1_Mus2 SINE 1.0 0.0 1.4 5.4 −1.0 0.0 B1F SINE 1.1 0.0 1.4 4.6 −1.1 0.0 B1F1 SINE −1.6 0.0 1.4 2.0 1.0 0.0 B2_Mm2 SINE 1.2 0.0 1.3 5.3 1.2 0.0 B3 SINE −1.0 0.0 1.3 10.1 1.2 0.0 B3A SINE −1.0 0.0 1.3 5.7 1.1 0.0 B4A SINE −1.7 97.3 1.3 5.4 −1.0 0.0 ID SINE −1.5 0.0 1.7 0.9 −1.9 0.0 ID_B1 SINE −1.0 0.0 1.4 8.1 −1.1 0.0 ID4 SINE −1.4 0.0 1.3 2.2 1.4 0.0 ID4_b SINE 1.0 0.0 1.4 2.8 1.1 0.0 MamSINE1 SINE −11.8 0.0 2.6 0.2 −8.9 0.0 MIR SINE 1.3 0.0 1.5 4.4 1.2 0.0 MIR3 SINE 1.4 0.0 2.1 1.7 1.3 0.0 MIRb SINE 1.1 0.0 1.7 4.4 1.5 3.3 MIRc SINE 1.4 0.0 1.8 2.5 1.3 0.0 MIRm SINE 1.5 0.0 1.8 0.8 1.2 0.0 PB1 SINE −1.1 0.0 1.8 1.7 −1.4 0.0 PB1D10 SINE −1.1 0.0 1.5 5.8 1.3 0.0 PB1D7 SINE 1.1 0.0 1.6 2.1 1.3 0.0 PB1D9 SINE 1.2 0.0 1.6 2.4 1.1 0.0 RSINE1 SINE −1.1 0.0 1.4 8.0 1.1 0.0 tRNA-Ala-GCA tRNA −1.0 0.0 2.9 0.1 4.3 0.2 tRNA-Ala-GCY tRNA −1.5 0.0 2.1 0.4 1.6 0.0

Example 7 A Hierarchy of EZH2 Sites

What is the relationship between strong and moderate sites and how does spreading occur between them? Exemplified by the Slc16a2-Rnf12 (Rlim) region (FIG. 5A) and the Mamld1 locus (FIG. 14), bivalent domains show high EZH2 coverage on d0. During XCI, new strong sites were acquired (non-bivalent for Mamld1 in FIG. 14, two bivalent ones in FIG. 5) and multiple closely-spaced moderate sites appeared near pre-existing strong sites, concurrently with increased density of H3K27me3. With one strong site for every 20-40 moderate sites, we hypothesize that strong sites might serve as recruiting ‘hubs’ from which EZH2 is passed onto adjacent moderate sites. Three models of spreading are possible (FIG. 5B). EZH2 may be relayed from a strong site to multiple adjacent moderate sites through ‘serial transfer’. Alternatively, a strong site could relay EZH2 to moderate sites via ‘direct transfer’ through long-range 3D interactions. Finally, moderate and strong sites may not be functionally linked and spreading could instead occur nucleosome-by-nucleosome from the Xic.

To gain insight, densities of strong and moderate EZH2 sites and H3K27me3 were calculated over the lengths of Chr13 and ChrX (FIG. 6A) and analyzed positional correlations and significance (Pearson R and Z) between moderate EZH2 sites and strong sites, as well as moderate sites and H3K27me3. On d0, these correlations had only borderline significance on both Chr13 and ChrX. On d7, correlations were unchanged for Chr13 but increased greatly on ChrX (Note overlapping red, orange, and black lines from d0 to d7). The correlation of H3K27me3 with moderate sites was especially strong (black R=0.76, Z=13.2) and was highly significant even at small bin sizes (0.5 Mb). These data contain two separable observations regarding possible modes of XCI spreading: First, the presence of distinct peaks lacking height order (i.e. largest to smallest from Xic to telomere) in EZH2 and H3K27me3 densities over ChrX on d7 argues against nucleosome-by-nucleosome spreading of XCI, which might be expected to manifest as a continuous chromosomal gradient descending from the Xic. Second, the XCI-specific increase in positional correlation illustrates that moderate sites cluster near strong sites on ChrX on d7, an event highly unlikely to be due to chance (Z=8.2). Thus, we suggest a functional link between strong and moderate EZH2 sites, perhaps with strong sites seeding moderate sites in their vicinity to spread H3K27me3.

Both serial and direct transfer models (FIG. 5B) might predict a sensitivity of spreading to physical distance. To ask how EZH2 and H3K27me3 densities of a sliding window change as a function of distance from the nearest strong EZH2 site, we plotted trendlines of EZH2 and H3K27me3 densities over megabase-scale distances (FIGS. 6B,C). On Chr13, EZH2 and H3K27me3 densities did not correlate with distance from the nearest strong site on either d0 or d7. The d0 ChrX profile looked nearly identical to those of Chr13. On d7 however, EZH2 and H3K27me3 densities increased dramatically around strong sites (near 0, FIG. 6B,C), consistent with metagene and metasite profiles (FIG. 1,3). Intriguingly, these densities decayed with distance from the nearest strong site. EZH2 densities dropped 3-fold down to baseline by 3 Mb, and H3K27me3 densities dropped 4-fold over the same distance. These observations revealed a gradient of EZH2 binding and catalytic activity around strong sites, arguing for distance-dependent effects at the megabase-scale specific to ChrX during XCI.

Are EZH2 and H3K27me3 densities of a given moderate site also sensitive to physical distance between strong and moderate sites? On Chr13, similar to trendlines for overall coverage densities (FIGS. 6B,C), EZH2 and H3K27me3 densities at moderate sites did not correlate with distance to the nearest strong site on either d0 or d7 (FIG. 7A,B). This was also the case for ChrX on d0. Analysis of ChrX on d7 revealed that the H3K27me3 trendline for moderate sites (FIG. 7B) displayed a similar decay (FIG. 6C) in H3K27me3 density with increasing distance to the nearest strong site. Importantly, the EZH2 trendline showed no significant distance-dependent effect at all over 0-3 Mb (FIG. 7A,B).

Moderate sites tend to be located close (<1 Mb) to strong sites (FIG. 6A, 7C). This trend was especially pronounced on ChrX on d7 (FIG. 7C, with the largest fraction of all sites clustered within a distance of 0.5 Mb from closest strong site), suggesting acquisition of moderate sites during XCI in the vicinity of strong sites. Importantly, H3K27me3 densities of moderate sites decay with increasing distance to the closest strong site only on ChrX on d7, as seen for both trendlines fitted to raw data (FIG. 7A,B) as well as medians of densities binned over a set distances (FIG. 7C, 40-kb bins). For a numerical characteristic of this long-range effect, we conservatively estimated the radius of the “sphere of influence” of strong EZH2 sites on neighboring moderate sites by calculating the distance-at-half-maximum for the density trendlines. For Chr13 on both days and ChrX on d0, the range was small (0.6-0.8 Mb; FIG. 7B triangles). In contrast, the range for ChrX on d7 was 3-fold greater (2.0 Mb). These data show that, during XCI, there is significant growth of moderate sites around strong sites and that, furthermore, there is substantial increase in the sphere of influence of a given strong site. The general EZH2 and H3K27me3 gradient (FIG. 6B,C) likely resulted from clustering of as moderate sites around strong sites (FIG. 7C). Importantly, the H3K27me3 density of each moderate site decreased with increasing distance from the closest strong site, specifically on ChrX on d7 (FIG. 7B,C). The lack of a similar gradient for EZH2 (FIG. 7A) suggests that EZH2 is not relayed in serial fashion from strong site to proximal moderate site and on to distal moderate site, because EZH2 densities of moderate sites would decay with increasing distance. Instead, the data are most consistent with the notion that strong sites are directly seeding moderate sites nearby, transferring discrete quantities of EZH2 directly from strong to moderate site, rather than spreading EZH2 linearly in a nucleosome-to-nucleosome fashion. Therefore, of the three potential models in FIG. 5B, we favor a direct transfer model in which XCI spreading occurs in a three-step process (FIG. 7D).

Tables IVA-C present the full list of strong (TVA) and moderate (IVB and IVC) EZH2 sites on mouse ChrX. Table IVB presents those mouse moderate binding sites with human liftover sites, and the SEQ ID NOs. corresponding to those human liftover sites. Table IVC presents mouse moderate binding sites without human liftover sites.

For Table IVA: 0, day 0 ES cells: 7, day 7 ES cells; M, MEF cells.

TABLE IVA mouse human HUMAN Day/cell start stop start stop name SEQ ID NO: 0 6355750 6357250 50212545 50213682 X_d0seg_1 5933 0 11581050 11582400 39870650 39872160 X_d0seg_2 5934 0 11654250 11656500 39953733 39956003 X_d0seg_3 5935 0 11658000 11659650 39957538 39959198 X_d0seg_4 5936 0 11661300 11669900 39960989 39970382 X_d0seg_5 5937 0 11702200 11711600 40002293 40012108 X_d0seg_6 5938 0 13063000 13064350 41332668 41334037 X_d0seg_7 5939 0 19636150 19637850 46432902 46434381 X_d0seg_8 5940 0 34588150 34590950 118891849 118895631 X_d0seg_9 5941 0 35603800 35605650 119443498 119445332 X_d0seg_10 5942 0 45387450 45388650 128788385 128789539 X_d0seg_11 5943 0 46837700 46839500 130206324 130208164 X_d0seg_12 5944 0 46845400 46846850 130214751 130216122 X_d0seg_13 5945 0 47252550 47253750 none none X_d0seg_14 0 49032200 49035300 132089948 132093140 X_d0seg_15 5946 0 50411050 50413200 133684370 133686238 X_d0seg_16 5947 0 51077050 51079600 none none X_d0seg_17 0 51278000 51279750 none none X_d0seg_18 0 55170850 55174500 136507747 136511479 X_d0seg_19 5948 0 56819550 56821700 138285559 138287629 X_d0seg_20 5949 0 58143800 58145750 139584389 139586382 X_d0seg_21 5950 0 58147400 58150150 139588021 139591349 X_d0seg_22 5951 0 63905800 63907600 144902694 144904464 X_d0seg_23 5952 0 68302550 68306150 149530837 149534342 X_d0seg_24 5953 0 68914200 68919300 150342031 150347910 X_d0seg_25 5954 0 70666600 70668850 152685724 152687813 X_d0seg_26 5955 0 90526850 90544850 25020529 25039134 X_d0seg_27 5956 0 91610450 91612400 23925910 23927984 X_d0seg_28 5957 0 95343200 95348050 66762975 66767942 X_d0seg_29 5958 0 96331100 96333000 68048502 68050400 X_d0seg_30 5959 0 98890350 98893700 70798488 70799686 X_d0seg_31 5960 0 99043550 99046750 71129147 71132812 X_d0seg_32 5961 0 99445650 99449150 71524940 71528621 X_d0seg_33 5962 0 101015800 101017750 73640853 73642890 X_d0seg_34 5963 0 102957600 102962150 76703692 76705284 X_d0seg_35 5964 0 108010200 108013400 82763729 82767068 X_d0seg_36 5965 0 109009250 109010600 none none X_d0seg_37 0 109715300 109716400 84499950 84501037 X_d0seg_38 5966 0 117403550 117406500 91033972 91036917 X_d0seg_39 5967 0 130219100 130222100 99660982 99663892 X_d0seg_40 5968 0 130223500 130226150 99665247 99667700 X_d0seg_41 5969 0 133633250 133635300 none none X_d0seg_42 0 133638650 133640400 none none X_d0seg_43 0 133652750 133658500 103498701 103501568 X_d0seg_44 5970 0 134102600 134106900 103808481 103812486 X_d0seg_45 5971 0 135446700 135448600 105064204 105066146 X_d0seg_46 5972 0 136595250 136597000 none none X_d0seg_47 0 136811000 136814500 106691670 106694899 X_d0seg_48 5973 0 137131700 137133550 107017375 107019086 X_d0seg_49 5974 0 138155450 138160200 107975156 107980031 X_d0seg_50 5975 0 152058400 152060300 23350696 23352468 X_d0seg_51 5976 0 154479100 154481450 21392303 21394736 X_d0seg_52 5977 0 158345400 158346750 17673909 17675213 X_d0seg_53 5978 0 164560750 164562150 12155682 12157098 X_d0seg_54 5979 0 165232450 165234650 11682453 11684741 X_d0seg_55 5980 0 166317850 166318900 10587335 10588320 X_d0seg_56 5981 7 6355950 6357900 50211824 50213570 X_d7seg_1 5982 7 7121100 7122700 none none X_d7seg_2 7 7498450 7502200 48687634 48692237 X_d7seg_3 5983 7 10294900 10296300 38663737 38665158 X_d7seg_4 5984 7 11241850 11243350 39548159 39549617 X_d7seg_5 5985 7 11382900 11384550 39678763 39680514 X_d7seg_6 5986 7 11576800 11584500 39866133 39874292 X_d7seg_7 5987 7 11618350 11619550 39916154 39916960 X_d7seg_8 5988 7 11642600 11648900 39941590 39948337 X_d7seg_9 5989 7 11650000 11672900 39949546 39972450 X_d7seg_10 5990 7 11699450 11718900 39999868 40018589 X_d7seg_11 5991 7 11727350 11738450 40025540 40037252 X_d7seg_12 5992 7 12338750 12340000 40594595 40595937 X_d7seg_13 5993 7 13062600 13063900 41332467 41333587 X_d7seg_14 5994 7 13423950 13425200 41782998 41784181 X_d7seg_15 5995 7 19636100 19638650 46432902 46435184 X_d7seg_16 5996 7 20194000 20195500 47003630 47005197 X_d7seg_17 5997 7 33430850 33432050 117631803 117632878 X_d7seg_18 5998 7 33867300 33870050 118107473 118110151 X_d7seg_19 5999 7 34587350 34590550 118891276 118894307 X_d7seg_20 6000 7 35533400 35534750 none none X_d7seg_21 7 35603700 35606500 119443375 119446145 X_d7seg_22 6001 7 38753650 38755500 122317397 122319184 X_d7seg_23 6002 7 39878950 39880250 none none X_d7seg_24 7 40779750 40784250 124335918 124340213 X_d7seg_25 6003 7 45385700 45389400 128786671 128790322 X_d7seg_26 6004 7 45638750 45640750 129066389 129068773 X_d7seg_27 6005 7 45693200 45698600 129112930 129118262 X_d7seg_28 6006 7 45805150 45807500 129242747 129244939 X_d7seg_29 6007 7 46079400 46080700 none none X_d7seg_30 7 46829050 46830450 130197943 130199420 X_d7seg_31 6008 7 46845400 46848150 130214751 130217434 X_d7seg_32 6009 7 48647950 48648950 none none X_d7seg_33 7 49033400 49035850 132091169 132093740 X_d7seg_34 6010 7 49515800 49517700 132546731 132548722 X_d7seg_35 6011 7 49966800 49968050 133119292 133120452 X_d7seg_36 6012 7 50410150 50413500 133683549 133686542 X_d7seg_37 6013 7 51077150 51079700 none none X_d7seg_38 7 51277000 51280800 none none X_d7seg_39 7 54755800 54757950 136114934 136117115 X_d7seg_40 6014 7 54924750 54926300 none none X_d7seg_41 7 55031150 55032750 136362871 136364401 X_d7seg_42 6015 7 55169850 55176350 136506771 136513469 X_d7seg_43 6016 7 55279850 55281950 136644296 136646423 X_d7seg_44 6017 7 55283050 55287350 136647551 136651893 X_d7seg_45 6018 7 56818750 56823950 138284776 138290162 X_d7seg_46 6019 7 57428850 57430650 138771932 138772950 X_d7seg_47 6020 7 58052150 58053850 139471899 139473730 X_d7seg_48 6021 7 58143750 58152800 139584340 139594145 X_d7seg_49 6022 7 66613300 66615500 147581916 147584207 X_d7seg_50 6023 7 68301750 68305800 149530084 149534002 X_d7seg_51 6024 7 68334300 68335700 149578687 149580006 X_d7seg_52 6025 7 68914500 68919750 150342370 150348293 X_d7seg_53 6026 7 70666200 70668550 152685054 152687512 X_d7seg_54 6027 7 70880850 70883000 152907833 152909967 X_d7seg_55 6028 7 70884700 70886100 152912593 152913737 X_d7seg_56 6029 7 71124850 71126000 153150311 153151480 X_d7seg_57 6030 7 71597850 71598950 153706412 153707323 X_d7seg_58 6031 7 72387600 72388700 none none X_d7seg_59 7 74677100 74678400 9309273 9310019 X_d7seg_60 6032 7 80732150 80733300 none none X_d7seg_61 7 83217150 83218700 30494898 30495893 X_d7seg_62 6033 7 90526600 90546650 25018602 25039378 X_d7seg_63 6034 7 91610200 91612500 23925811 23928130 X_d7seg_64 6035 7 91881050 91882300 51486154 51487415 X_d7seg_65 6036 7 94121300 94122300 none none X_d7seg_66 7 95343750 95348350 66763547 66768258 X_d7seg_67 6037 7 95361600 95362800 66783391 66784225 X_d7seg_68 6038 7 96638500 96639900 68356970 68358498 X_d7seg_69 6039 7 96662350 96663600 68381596 68382930 X_d7seg_70 6040 7 97170850 97172350 68835881 68837401 X_d7seg_71 6041 7 97280900 97282650 68948351 68949247 X_d7seg_72 6042 7 98577750 98581100 70441491 70445186 X_d7seg_73 6043 7 98834700 98835950 70752200 70753489 X_d7seg_74 6044 7 98890600 98894100 70798488 70799686 X_d7seg_75 6045 7 99041000 99042800 71126674 71128573 X_d7seg_76 6046 7 99044000 99047000 71129999 71133070 X_d7seg_77 6047 7 99264900 99267200 71350158 71352516 X_d7seg_78 6048 7 99440900 99449050 71520048 71528514 X_d7seg_79 6049 7 99640600 99641850 71731757 71733094 X_d7seg_80 6050 7 100516300 100519250 72666458 72669490 X_d7seg_81 6051 7 100549750 100551250 72780982 72782399 X_d7seg_82 6052 7 100643850 100646150 73014340 73015090 X_d7seg_83 6053 7 100889450 100891200 73755360 73757355 X_d7seg_84 6054 7 101014850 101017550 73641056 73643867 X_d7seg_85 6055 7 101175150 101176800 73832957 73834636 X_d7seg_86 6056 7 102315250 102317050 75647562 75649460 X_d7seg_87 6057 7 102957400 102962250 76703692 76705391 X_d7seg_88 6058 7 103414650 103415900 77394772 77395913 X_d7seg_89 6059 7 104871650 104873100 79277162 79278723 X_d7seg_90 6060 7 106380700 106381950 80604122 80604916 X_d7seg_91 6061 7 108009100 108013200 82762609 82766870 X_d7seg_92 6062 7 109714550 109716500 84499233 84501149 X_d7seg_93 6063 7 117403500 117405800 91033931 91036207 X_d7seg_94 6064 7 126283950 126284950 95939522 95940514 X_d7seg_95 6065 7 130218250 130227050 99660156 99668596 X_d7seg_96 6066 7 130515100 130516400 99985953 99987187 X_d7seg_97 6067 7 131291750 131293650 100878751 100880488 X_d7seg_98 6068 7 131498150 131499850 none none X_d7seg_99 7 133201000 133202800 102862894 102864714 X_d7seg_100 6069 7 133633550 133635650 none none X_d7seg_101 7 133638950 133640150 none none X_d7seg_102 7 133652000 133656050 103497966 103500889 X_d7seg_103 6070 7 134103900 134107150 103809534 103812755 X_d7seg_104 6071 7 135269700 135271350 104892432 104893265 X_d7seg_105 6072 7 135642200 135643400 105302644 105303360 X_d7seg_106 6073 7 136594950 136598150 none none X_d7seg_107 7 136810300 136814100 106690970 106694548 X_d7seg_108 6074 7 137131450 137137100 107017134 107022121 X_d7seg_109 6075 7 137199700 137201550 107069547 107072468 X_d7seg_110 6076 7 137586800 137587850 none none X_d7seg_111 7 137950500 137951900 none none X_d7seg_112 7 138155350 138161850 107975050 107981731 X_d7seg_113 6077 7 138739450 138740600 108867092 108868281 X_d7seg_114 6078 7 139827900 139829450 110038531 110040094 X_d7seg_115 6079 7 140152250 140153450 none none X_d7seg_116 7 141121300 141125200 111324058 111328035 X_d7seg_117 6080 7 143394550 143398700 113816106 113820202 X_d7seg_118 6081 7 148578700 148580800 53348416 53350615 X_d7seg_119 6082 7 149406500 149407950 none none X_d7seg_120 7 149412300 149413650 none none X_d7seg_121 7 150022350 150023850 none none X_d7seg_122 7 150194300 150195450 none none X_d7seg_123 7 152056300 152061350 23349575 23354523 X_d7seg_124 6083 7 154381450 154382500 none none X_d7seg_125 7 154478950 154481700 21392077 21394905 X_d7seg_126 6084 7 155693950 155696050 20282889 20284842 X_d7seg_127 6085 7 155852450 155854200 20133605 20135150 X_d7seg_128 6086 7 156828250 156830300 19138526 19141115 X_d7seg_129 6087 7 157347550 157349050 18539561 18540409 X_d7seg_130 6088 7 157378650 157380150 18508174 18509130 X_d7seg_131 6089 7 158154950 158158400 17875998 17879464 X_d7seg_132 6090 7 158163800 158164950 17869593 17870743 X_d7seg_133 6091 7 158346050 158347950 17672666 17674598 X_d7seg_134 6092 7 158478550 158479650 17524940 17526056 X_d7seg_135 6093 7 158596100 158598350 17392900 17395147 X_d7seg_136 6094 7 160197550 160199400 none none X_d7seg_137 7 160345550 160347000 15873003 15874465 X_d7seg_138 6095 7 160682000 160683400 15530416 15532882 X_d7seg_139 6096 7 162675550 162678650 13955103 13958196 X_d7seg_140 6097 7 163645450 163647650 12992638 12994912 X_d7seg_141 6098 7 164318000 164319200 12379109 12380073 X_d7seg_142 6099 7 164513650 164514900 12203435 12204396 X_d7seg_143 6100 7 165222300 165223600 11689875 11691335 X_d7seg_144 6101 7 165232500 165235950 11680989 11684700 X_d7seg_145 6102 7 165474950 165476250 11444197 11445529 X_d7seg_146 6103 7 166425950 166427250 10417297 10418060 X_d7seg_147 6104 M 6354500 6357650 50212150 50214751 Mseg_1 6105 M 11383500 11385150 39679408 39681127 Mseg_2 6106 M 11663400 11667900 39963187 39967867 Mseg_3 6107 M 11716850 11718450 40017048 40018389 Mseg_4 6108 M 33867050 33870000 118107246 118110101 Mseg_5 6109 M 34588050 34590250 118891747 118894003 Mseg_6 6110 M 36147950 36149450 119915712 119916185 Mseg_7 6111 M 48194000 48195550 131156656 131158215 Mseg_8 6112 M 49965700 49968450 133118192 133121172 Mseg_9 6113 M 51278600 51280350 none none Mseg_10 M 55170200 55172300 136507079 136509288 Mseg_11 6114 M 55173350 55174750 136510352 136511728 Mseg_12 6115 M 55271400 55273350 136631672 136633482 Mseg_13 6116 M 55280300 55287050 136644722 136651581 Mseg_14 6117 M 55290550 55292350 136655150 136657164 Mseg_15 6118 M 57431400 57432800 138773758 138774995 Mseg_16 6119 M 58144150 58149000 139584764 139589645 Mseg_17 6120 M 68914150 68919150 150341980 150347692 Mseg_18 6121 M 70747800 70749800 152782594 152784456 Mseg_19 6122 M 85396250 85397400 none none Mseg_20 M 90492700 90494500 25071294 25072254 Mseg_21 6123 M 90526400 90527900 25038048 25039598 Mseg_22 6124 M 90529250 90530700 25035237 25036755 Mseg_23 6125 M 90532900 90536800 25028850 25032991 Mseg_24 6126 M 90539250 90544950 25020386 25026336 Mseg_25 6127 M 98579350 98580950 70443345 70445034 Mseg_26 6128 M 99044100 99046300 71130118 71132470 Mseg_27 6129 M 99445250 99447450 71524416 71526952 Mseg_28 6130 M 100380800 100382350 72433479 72435048 Mseg_29 6131 M 100517100 100518450 72667291 72668591 Mseg_30 6132 M 100642000 100644900 none none Mseg_31 M 101394600 101397000 74143561 74145754 Mseg_32 6133 M 117405950 117407000 91036360 91037375 Mseg_33 6134 M 119510000 119511250 92927719 92928844 Mseg_34 6135 M 127858650 127859800 97533217 97534152 Mseg_35 6136 M 133651850 133655750 103497517 103500629 Mseg_36 6137 M 136595100 136597800 none none Mseg_37 M 136811700 136813750 106692325 106694186 Mseg_38 6138 M 137134350 137135400 107019665 107020545 Mseg_39 6139 M 138155700 138161850 107975434 107981731 Mseg_40 6140 M 141123000 141124650 111325775 111327435 Mseg_41 6141 M 143397150 143398250 113818658 113819740 Mseg_42 6142 M 152056200 152059650 23351204 23354627 Mseg_43 6143 M 154479800 154481850 21391910 21394015 Mseg_44 6144 M 155851900 155854000 20133820 20135681 Mseg_45 6145 M 158154850 158156600 17877847 17879563 Mseg_46 6146 M 158345700 158347450 17673177 17674917 Mseg_47 6147 M 159080700 159082100 16964311 16965735 Mseg_48 6148 M 160197950 160200150 none none Mseg_49 M 165232950 165234750 11682353 11684132 Mseg_50 6149

For Table IIVB: 0, day 0 ES cells; 7, day 7 ES cells; M, MEF cells. The SEQ NOs. are for the human liftover sequences corresponding to the empirically identified mouse binding sites.

TABLE IVB Mouse Binding Sites with Human Liftovers Cell/ Mouse Human Segment Day Start end start end name SEQ ID NO: 0 5498050 5499850 51384621 51385743 d0Mseg12 6150 0 5626750 5628600 51237102 51237727 d0Mseg15 6151 0 5658250 5660100 51150260 51151798 d0Mseg16 6152 0 5668400 5670100 51138480 51140100 d0Mseg17 6153 0 5748000 5749900 51075870 51076838 d0Mseg18 6154 0 6269800 6271650 50271710 50272155 d0Mseg21 6155 0 6311700 6313400 50259828 50260498 d0Mseg22 6156 0 6355350 6359100 50210609 50214087 d0Mseg23 6157 0 6439500 6441200 50178893 50180814 d0Mseg24 6158 0 6621650 6623350 49967916 49968685 d0Mseg25 6159 0 6894000 6895750 49687889 49689724 d0Mseg26 6160 0 6926950 6928600 49664202 49664943 d0Mseg27 6161 0 6943500 6945150 49652496 49653779 d0Mseg28 6162 0 6951300 6952700 49644353 49645597 d0Mseg29 6163 0 6954450 6956600 49640185 49642591 d0Mseg30 6164 0 7192150 7194200 49079555 49082334 d0Mseg31 6165 0 7216650 7218550 49053974 49055791 d0Mseg32 6166 0 7248700 7250350 49025447 49028034 d0Mseg33 6167 0 7542700 7544550 48645436 48646897 d0Mseg34 6168 0 8713600 8714850 37377045 37377723 d0Mseg44 6169 0 8819600 8821400 37507349 37511839 d0Mseg45 6170 0 9113750 9115350 37576100 37576664 d0Mseg46 6171 0 9645550 9647250 38032241 38034190 d0Mseg50 6172 0 9651300 9653000 38037944 38039779 d0Mseg51 6173 0 9692900 9694950 38078201 38080297 d0Mseg53 6174 0 9755150 9756900 38149973 38150474 d0Mseg54 6175 0 9867700 9869400 38249973 38251585 d0Mseg55 6176 0 10020200 10022150 38364806 38366637 d0Mseg56 6177 0 10061900 10063850 38420306 38422352 d0Mseg57 6178 0 10076700 10077700 38438460 38439366 d0Mseg58 6179 0 10078900 10080600 38439858 38441923 d0Mseg59 6180 0 10121350 10122750 38480547 38482022 d0Mseg60 6181 0 10279550 10281150 38649265 38650920 d0Mseg62 6182 0 10386900 10388750 38765167 38766457 d0Mseg63 6183 0 10538600 10540100 38899029 38900549 d0Mseg64 6184 0 10561550 10563100 38912277 38913350 d0Mseg65 6185 0 10626900 10628650 38981715 38982441 d0Mseg66 6186 0 10874500 10876100 39220834 39221777 d0Mseg67 6187 0 10981850 10983550 39298806 39300497 d0Mseg68 6188 0 11068300 11070450 39375066 39377627 d0Mseg69 6189 0 11240150 11243650 39546298 39549617 d0Mseg70 6190 0 11283650 11285000 39588385 39589768 d0Mseg71 6191 0 11354250 11356100 39645601 39653225 d0Mseg73 6192 0 11375100 11376200 39670709 39671699 d0Mseg74 6193 0 11383350 11385400 39679261 39681394 d0Mseg75 6194 0 11387500 11390550 39687004 39690176 d0Mseg76 6195 0 11413850 11415500 39711808 39713462 d0Mseg77 6196 0 11506750 11508550 39800944 39802652 d0Mseg78 6197 0 11510300 11511900 39804787 39806020 d0Mseg79 6198 0 11516600 11518550 39808913 39810205 d0Mseg80 6199 0 11573900 11584350 39862889 39874130 d0Mseg81 6200 0 11645350 11646550 39944588 39945914 d0Mseg82 6201 0 11652900 11671400 39952327 39971371 d0Mseg83 6202 0 11701800 11718950 40001909 40018589 d0Mseg84 6203 0 11731500 11733350 40030026 40032134 d0Mseg85 6204 0 11735400 11737750 40034243 40036599 d0Mseg86 6205 0 11828200 11830050 40124432 40126931 d0Mseg87 6206 0 11874350 11876050 40171654 40173026 d0Mseg88 6207 0 11919050 11920800 40222540 40225263 d0Mseg89 6208 0 13062550 13064850 41332467 41334385 d0Mseg93 6209 0 13127000 13128000 41413718 41414777 d0Mseg94 6210 0 13169700 13171350 41478429 41480000 d0Mseg95 6211 0 13228200 13230000 41561029 41563513 d0Mseg96 6212 0 13260850 13262550 41605553 41608150 d0Mseg97 6213 0 13423650 13425450 41782693 41784443 d0Mseg98 6214 0 13498950 13500800 41843824 41845252 d0Mseg99 6215 0 13702300 13704050 41957723 41959332 d0Mseg100 6216 0 13847550 13849400 42072561 42073365 d0Mseg101 6217 0 14115400 14117050 42256207 42258188 d0Mseg104 6218 0 14250650 14252100 42385818 42386012 d0Mseg105 6219 0 14686750 14688450 42634126 42637274 d0Mseg107 6220 0 14828200 14829850 42697133 42697663 d0Mseg109 6221 0 14830900 14832600 42692356 42692645 d0Mseg110 6222 0 14924600 14926300 42763595 42771532 d0Mseg111 6223 0 15457800 15459500 43085068 43086778 d0Mseg115 6224 0 15488400 15490100 43093809 43094667 d0Mseg116 6225 0 16064950 16066500 43437190 43438047 d0Mseg118 6226 0 16098550 16100350 145890788 145891496 d0Mseg119 6227 0 16291950 16293550 43630279 43634460 d0Mseg120 6228 0 16467700 16469700 43814337 43816308 d0Mseg121 6229 0 16512450 16514150 43855852 43856472 d0Mseg122 6230 0 17462100 17463800 102931764 102931959 d0Mseg125 6231 0 17565900 17566950 44622555 44623924 d0Mseg126 6232 0 17733350 17734550 44724938 44726299 d0Mseg127 6233 0 18828500 18830200 45722726 45724726 d0Mseg138 6234 0 18957250 18958850 45817006 45832328 d0Mseg140 6235 0 19558200 19559450 46284530 46285072 d0Mseg144 6236 0 19633850 19638150 46432902 46434681 d0Mseg147 6237 0 19779950 19781600 46539229 46541241 d0Mseg149 6238 0 20088800 20090600 46914256 46916022 d0Mseg151 6239 0 20124450 20127600 46937281 46940639 d0Mseg152 6240 0 21131900 21133650 115398655 115400110 d0Mseg156 6241 0 21172800 21174400 115457948 115472259 d0Mseg157 6242 0 21293650 21295250 115569207 115571604 d0Mseg158 6243 0 21859100 21861000 116088373 116089315 d0Mseg163 6244 0 22127700 22129500 116379235 116380628 d0Mseg168 6245 0 22140050 22141700 116393220 116393816 d0Mseg169 6246 0 22176700 22178250 116444897 116445300 d0Mseg170 6247 0 22214750 22216350 116504858 116506369 d0Mseg171 6248 0 22439500 22440700 116681128 116681830 d0Mseg173 6249 0 22653150 22654700 116890499 116897650 d0Mseg174 6250 0 22669150 22670750 116904891 116906150 d0Mseg175 6251 0 22673300 22675100 116909986 116911046 d0Mseg176 6252 0 22821650 22822700 117051368 117051896 d0Mseg177 6253 0 22935400 22936800 117244223 117246416 d0Mseg178 6254 0 22938700 22940600 117247748 117249078 d0Mseg179 6255 0 23051650 23053550 117330906 117331130 d0Mseg180 6256 0 23264800 23266550 117474321 117475532 d0Mseg182 6257 0 23519450 23521100 127076727 127077736 d0Mseg183 6258 0 33649800 33653650 117860276 117862945 d0Mseg200 6259 0 33864350 33870000 118103194 118110101 d0Mseg201 6260 0 34284900 34286250 118534368 118535141 d0Mseg204 6261 0 34476050 34477400 118777825 118778830 d0Mseg206 6262 0 34587050 34591300 118890977 118896264 d0Mseg208 6263 0 34670100 34671800 119072042 119073223 d0Mseg209 6264 0 35564300 35565300 119403850 119405074 d0Mseg221 6265 0 35598700 35600500 119438010 119439841 d0Mseg222 6266 0 35603150 35606150 119442759 119445796 d0Mseg223 6267 0 35611300 35613100 119451846 119453474 d0Mseg224 6268 0 35690850 35691850 119517726 119518291 d0Mseg225 6269 0 35754350 35756050 119561427 119562856 d0Mseg226 6270 0 35819150 35820850 119614477 119615648 d0Mseg227 6271 0 36039400 36041250 119842373 119842929 d0Mseg228 6272 0 36173350 36174900 119932892 119933252 d0Mseg230 6273 0 36654450 36656100 120330537 120332343 d0Mseg236 6274 0 36876550 36878100 120528235 120530237 d0Mseg238 6275 0 37793150 37794800 121250458 121253285 d0Mseg242 6276 0 37844400 37846150 121330934 121337734 d0Mseg244 6277 0 38469450 38470650 122066574 122067437 d0Mseg251 6278 0 38594850 38596500 122206545 122207118 d0Mseg253 6279 0 38753000 38757450 122316744 122321135 d0Mseg254 6280 0 38815700 38817400 122375517 122378159 d0Mseg255 6281 0 38868850 38870550 122423590 122427671 d0Mseg256 6282 0 39067900 39069500 122660711 122661389 d0Mseg257 6283 0 39302700 39304500 122883575 122883897 d0Mseg259 6284 0 39616700 39618350 123221188 123223377 d0Mseg262 6285 0 39625200 39626900 123230623 123233048 d0Mseg263 6286 0 39686050 39687600 123343412 123345001 d0Mseg265 6287 0 39714050 39715750 123364511 123365673 d0Mseg266 6288 0 40013950 40015100 123633862 123635113 d0Mseg267 6289 0 40098550 40100400 123708500 123709575 d0Mseg268 6290 0 40143600 40145300 123750446 123751745 d0Mseg269 6291 0 40151400 40153000 123759059 123762887 d0Mseg270 6292 0 40186550 40188250 123794765 123795552 d0Mseg271 6293 0 40210550 40211550 123809222 123809677 d0Mseg272 6294 0 40407600 40409250 124006420 124007290 d0Mseg274 6295 0 40472500 40474400 124062911 124063665 d0Mseg275 6296 0 40558600 40560400 124137181 124146965 d0Mseg276 6297 0 40779800 40783250 124335968 124339222 d0Mseg279 6298 0 40786750 40788350 124341501 124341841 d0Mseg280 6299 0 40806250 40807950 124361834 124362744 d0Mseg281 6300 0 40866400 40868350 124375759 124376574 d0Mseg282 6301 0 40961850 40963850 124470423 124472361 d0Mseg283 6302 0 41039500 41041250 124511669 124513421 d0Mseg284 6303 0 41323900 41325550 124805056 124805341 d0Mseg285 6304 0 41497750 41499050 124951426 124951961 d0Mseg287 6305 0 41720000 41721850 125298738 125300600 d0Mseg289 6306 0 43931600 43933350 127539134 127539717 d0Mseg306 6307 0 44562750 44564400 128049207 128050510 d0Mseg311 6308 0 44584200 44585750 128061267 128061602 d0Mseg312 6309 0 44813650 44815200 128244188 128245366 d0Mseg313 6310 0 44831400 44835800 128258218 128261991 d0Mseg314 6311 0 44885300 44887200 128287706 128288820 d0Mseg315 6312 0 44953550 44955250 128357475 128359345 d0Mseg316 6313 0 45226500 45228200 128638231 128640008 d0Mseg318 6314 0 45297750 45299550 128704573 128708498 d0Mseg319 6315 0 45385750 45389250 128786719 128790159 d0Mseg320 6316 0 45488450 45490400 128901741 128903749 d0Mseg321 6317 0 45505050 45506850 128918350 128920545 d0Mseg322 6318 0 45664900 45666900 129087730 129090199 d0Mseg323 6319 0 45696250 45699200 129115939 129118858 d0Mseg324 6320 0 45807950 45809750 129245394 129247932 d0Mseg325 6321 0 46132200 46133450 129558859 129559167 d0Mseg328 6322 0 46178900 46180600 129609706 129609943 d0Mseg330 6323 0 46223250 46224300 129641548 129642386 d0Mseg331 6324 0 46424000 46425650 129824019 129825338 d0Mseg332 6325 0 46788250 46790300 130160250 130160610 d0Mseg338 6326 0 46792650 46794150 130162565 130164136 d0Mseg339 6327 0 46830500 46832150 130199469 130201066 d0Mseg340 6328 0 46833300 46835250 130202016 130204177 d0Mseg341 6329 0 46837150 46840150 130205732 130208956 d0Mseg342 6330 0 46844900 46849150 130214214 130218472 d0Mseg343 6331 0 47117100 47118950 130390764 130392077 d0Mseg345 6332 0 47163200 47165050 130431899 130432414 d0Mseg346 6333 0 47250800 47254300 130471174 130471612 d0Mseg347 6334 0 47292300 47294250 130491898 130492160 d0Mseg348 6335 0 47296350 47297700 130493341 130494538 d0Mseg349 6336 0 47311250 47313150 130497500 130498116 d0Mseg350 6337 0 47517150 47518900 130678615 130678963 d0Mseg353 6338 0 48215300 48217100 131179423 131181280 d0Mseg357 6339 0 48256150 48260450 131220943 131225525 d0Mseg358 6340 0 48301750 48302950 131278014 131278763 d0Mseg359 6341 0 48418100 48419850 131426674 131427999 d0Mseg361 6342 0 48488050 48489200 131531145 131531727 d0Mseg362 6343 0 48560650 48561800 131625511 131627275 d0Mseg363 6344 0 48579050 48580700 131643579 131643804 d0Mseg364 6345 0 48711450 48713150 131731336 131733099 d0Mseg365 6346 0 49019800 49021500 132076121 132077158 d0Mseg366 6347 0 49030900 49035950 132088516 132093838 d0Mseg367 6348 0 49041550 49043400 132099266 132100904 d0Mseg368 6349 0 49054850 49056700 132111953 132114009 d0Mseg369 6350 0 49115350 49116900 132166372 132167098 d0Mseg370 6351 0 49449550 49451250 132477256 132479068 d0Mseg373 6352 0 49470850 49472300 132501369 132502597 d0Mseg374 6353 0 49516400 49519950 132547340 132550971 d0Mseg375 6354 0 49568750 49570250 132612063 132615648 d0Mseg376 6355 0 49947550 49949450 133098516 133100926 d0Mseg377 6356 0 49965700 49967650 133118192 133120136 d0Mseg378 6357 0 50117350 50118350 133324614 133325151 d0Mseg380 6358 0 50151750 50153450 133379324 133380833 d0Mseg381 6359 0 50389850 50391600 133646432 133647389 d0Mseg384 6360 0 50402300 50404150 133675065 133677098 d0Mseg385 6361 0 50410900 50414450 133684229 133687679 d0Mseg386 6362 0 50426350 50427400 133702755 133703787 d0Mseg387 6363 0 50680600 50682400 134010628 134011331 d0Mseg389 6364 0 51041250 51042750 134579038 134579956 d0Mseg396 6365 0 53613650 53615500 134492594 134493655 d0Mseg415 6366 0 53938600 53940400 135159035 135159827 d0Mseg417 6367 0 53985300 53986300 135229962 135231013 d0Mseg418 6368 0 54085350 54088900 135343978 135347694 d0Mseg419 6369 0 54090400 54091450 135349194 135349917 d0Mseg420 6370 0 54577950 54580050 135848013 135850107 d0Mseg421 6371 0 54755300 54757550 136114195 136116742 d0Mseg422 6372 0 54759150 54760800 136118238 136119738 d0Mseg423 6373 0 54833200 54834950 136181494 136182057 d0Mseg424 6374 0 54857650 54859300 136196146 136196356 d0Mseg425 6375 0 55043850 55045500 136378478 136379954 d0Mseg426 6376 0 55170200 55176300 136507079 136513398 d0Mseg428 6377 0 55269650 55271500 136629395 136631796 d0Mseg430 6378 0 55515950 55517600 136932196 136932407 d0Mseg433 6379 0 55627450 55629150 137004678 137005621 d0Mseg434 6380 0 55825650 55827350 137217567 137219377 d0Mseg435 6381 0 55863150 55864900 137263518 137264410 d0Mseg436 6382 0 55903200 55904850 137287637 137288858 d0Mseg437 6383 0 55972200 55974150 137369544 137371625 d0Mseg438 6384 0 56086950 56088600 137481110 137482124 d0Mseg439 6385 0 56309350 56311000 137708870 137709448 d0Mseg440 6386 0 56371000 56372750 137779385 137780630 d0Mseg441 6387 0 56386200 56388200 137792166 137794140 d0Mseg442 6388 0 56489150 56490650 137924802 137926367 d0Mseg443 6389 0 56693500 56695500 138159571 138161025 d0Mseg445 6390 0 56819200 56822050 138285209 138288246 d0Mseg446 6391 0 56873550 56874550 138351055 138352012 d0Mseg447 6392 0 57038750 57040500 138470872 138471659 d0Mseg448 6393 0 57087450 57088900 138506335 138507792 d0Mseg449 6394 0 57301100 57302800 138660159 138660376 d0Mseg451 6395 0 57393900 57397600 138716399 138721615 d0Mseg452 6396 0 57430250 57431950 138772601 138774240 d0Mseg453 6397 0 57647950 57649500 139006792 139007745 d0Mseg454 6398 0 57659050 57661050 139016306 139018771 d0Mseg455 6399 0 57801250 57803450 139173958 139176577 d0Mseg457 6400 0 57865700 57867350 139225313 139226165 d0Mseg458 6401 0 58013450 58015150 139427332 139427725 d0Mseg459 6402 0 58042800 58044650 139453825 139457542 d0Mseg460 6403 0 58081850 58083550 139517527 139520017 d0Mseg461 6404 0 58127500 58129500 139570393 139571700 d0Mseg463 6405 0 58132850 58134850 139573188 139574373 d0Mseg464 6406 0 58142300 58152450 139582747 139593795 d0Mseg465 6407 0 58737250 58739000 140549902 140551253 d0Mseg468 6408 0 58771150 58772950 140502362 140503638 d0Mseg469 6409 0 59181150 59182400 140648434 140650828 d0Mseg471 6410 0 59283000 59284650 140729589 140730359 d0Mseg472 6411 0 59311400 59313150 140752455 140755267 d0Mseg474 6412 0 59348750 59350450 140801407 140802195 d0Mseg475 6413 0 60103250 60105100 141547249 141548140 d0Mseg485 6414 0 60730100 60731850 142072550 142073142 d0Mseg492 6415 0 61008200 61010050 142312563 142312854 d0Mseg498 6416 0 61151200 61152950 142400730 142401528 d0Mseg501 6417 0 61527650 61531700 142720286 142724493 d0Mseg503 6418 0 61825450 61827050 143032965 143033272 d0Mseg505 6419 0 62320050 62321700 143568554 143570206 d0Mseg511 6420 0 62856500 62858100 144163597 144164556 d0Mseg515 6421 0 62949100 62950700 144253347 144255281 d0Mseg516 6422 0 62996700 62998050 144301426 144302229 d0Mseg517 6423 0 63407100 63408750 144516735 144517061 d0Mseg523 6424 0 63567050 63568950 144629942 144630384 d0Mseg527 6425 0 63778100 63779750 144808645 144810883 d0Mseg528 6426 0 63901200 63903850 144898111 144900677 d0Mseg530 6427 0 63905500 63907900 144902364 144904761 d0Mseg531 6428 0 64136900 64138700 145221785 145223055 d0Mseg533 6429 0 64179400 64181150 145252196 145253968 d0Mseg534 6430 0 64825300 64827050 145821989 145823194 d0Mseg539 6431 0 65072450 65074100 146034483 146035113 d0Mseg541 6432 0 65174700 65176100 146185425 146186095 d0Mseg543 6433 0 65407200 65408950 146545245 146545932 d0Mseg546 6434 0 65503700 65505350 146614980 146616114 d0Mseg549 6435 0 65954350 65956200 147015185 147017317 d0Mseg551 6436 0 66120050 66121650 147154382 147155922 d0Mseg553 6437 0 66203350 66205150 147214580 147215862 d0Mseg554 6438 0 66261200 66262650 147243281 147244824 d0Mseg555 6439 0 66559800 66561650 147527136 147529353 d0Mseg558 6440 0 66575100 66576800 147544151 147544709 d0Mseg559 6441 0 66584550 66586300 147552460 147553518 d0Mseg560 6442 0 66591350 66593000 147554689 147558186 d0Mseg561 6443 0 66612250 66615350 147580806 147584059 d0Mseg562 6444 0 66686400 66688000 147653591 147654308 d0Mseg563 6445 0 66796250 66798350 147743228 147744195 d0Mseg564 6446 0 66864650 66866250 147809791 147811048 d0Mseg565 6447 0 67074300 67076100 148021921 148024772 d0Mseg566 6448 0 67243850 67245850 148198540 148200273 d0Mseg568 6449 0 67449250 67450400 148406820 148406976 d0Mseg570 6450 0 67953150 67954850 149215097 149215558 d0Mseg572 6451 0 68177400 68179150 149423320 149425118 d0Mseg573 6452 0 68241150 68242650 149468454 149469389 d0Mseg575 6453 0 68274550 68276250 149502014 149502544 d0Mseg576 6454 0 68302300 68306450 149530447 149534656 d0Mseg577 6455 0 68912550 68919950 150340243 150348493 d0Mseg582 6456 0 69008800 69010950 150476931 150479631 d0Mseg585 6457 0 69019700 69021550 150506080 150506410 d0Mseg586 6458 0 69036350 69037700 150528414 150529663 d0Mseg587 6459 0 69518500 69520300 151141496 151143350 d0Mseg588 6460 0 69593150 69594850 151253649 151254915 d0Mseg589 6461 0 70170200 70171300 152013627 152014200 d0Mseg592 6462 0 70655800 70657950 152676293 152678338 d0Mseg598 6463 0 70664550 70669500 152684240 152688407 d0Mseg599 6464 0 70692950 70694650 152721396 152723065 d0Mseg600 6465 0 70711750 70713450 152741138 152742758 d0Mseg601 6466 0 70749800 70751750 152784456 152786356 d0Mseg602 6467 0 70762700 70764300 152796863 152798278 d0Mseg603 6468 0 70855400 70859850 152887498 152889256 d0Mseg604 6469 0 70880300 70883850 152907310 152911630 d0Mseg605 6470 0 71522150 71523800 153633517 153633972 d0Mseg608 6471 0 71559800 71561550 153673805 153675928 d0Mseg609 6472 0 72683300 72684900 154319084 154320539 d0Mseg616 6473 0 73271250 73273150 114681544 114682421 d0Mseg625 6474 0 73403300 73405000 114539896 114541084 d0Mseg627 6475 0 73945100 73946750 8809113 8810780 d0Mseg629 6476 0 74204800 74205950 8918925 8919933 d0Mseg633 6477 0 74354100 74355950 9097939 9098658 d0Mseg635 6478 0 74479650 74481500 9165561 9166569 d0Mseg639 6479 0 74835300 74837050 9541007 9542010 d0Mseg640 6480 0 74887150 74888850 9622451 9652183 d0Mseg641 6481 0 75814350 75816000 37220133 37221031 d0Mseg648 6482 0 76153600 76155300 36879028 36880035 d0Mseg652 6483 0 76204350 76205550 36846998 36847199 d0Mseg653 6484 0 76509050 76510700 36404171 36404660 d0Mseg654 6485 0 76733150 76734800 35993028 35994758 d0Mseg655 6486 0 76753500 76755200 35970094 35971592 d0Mseg656 6487 0 76810650 76812150 35905727 35906658 d0Mseg658 6488 0 77574200 77576000 35150260 35160500 d0Mseg665 6489 0 77684450 77686200 36740892 36744682 d0Mseg668 6490 0 78741350 78745900 34356727 34359854 d0Mseg678 6491 0 78872550 78873800 34285580 34286028 d0Mseg682 6492 0 79215650 79217350 33997931 33998333 d0Mseg684 6493 0 79557900 79559550 33741409 33743186 d0Mseg693 6494 0 79857600 79859300 33452012 33453109 d0Mseg696 6495 0 80254150 80255950 33185083 33186115 d0Mseg698 6496 0 80318500 80320200 33105869 33108524 d0Mseg699 6497 0 81251850 81253650 32239306 32242454 d0Mseg704 6498 0 81255150 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67319044 d0Mseg869 6574 0 96084100 96086200 67651012 67653565 d0Mseg870 6575 0 96211300 96213200 67884482 67886322 d0Mseg872 6576 0 96237950 96240650 67913458 67916124 d0Mseg873 6577 0 96329750 96333550 68047196 68050996 d0Mseg875 6578 0 96342550 96343850 68060181 68061523 d0Mseg876 6579 0 96393800 96395100 68113958 68115329 d0Mseg877 6580 0 96411000 96412800 68130958 68133362 d0Mseg878 6581 0 96421600 96423300 68143108 68146669 d0Mseg879 6582 0 96428000 96429850 68150769 68152786 d0Mseg880 6583 0 96512700 96514600 68235986 68238549 d0Mseg881 6584 0 96579250 96581150 68298297 68298617 d0Mseg883 6585 0 96593500 96595100 68310297 68311868 d0Mseg884 6586 0 96599750 96601450 68315355 68317029 d0Mseg885 6587 0 96608150 96609450 68324375 68325513 d0Mseg886 6588 0 96625050 96626650 68342396 68344299 d0Mseg887 6589 0 96627800 96630250 68346564 68349617 d0Mseg888 6590 0 96725450 96727150 68448086 68449933 d0Mseg889 6591 0 96763250 96765100 68497972 68500183 d0Mseg890 6592 0 96848650 96850350 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0 107515000 107516800 81980538 81982179 d0Mseg1029 6667 0 107890800 107892700 82586210 82588204 d0Mseg1032 6668 0 107917250 107918900 82606575 82608531 d0Mseg1033 6669 0 108008800 108013900 82762302 82767614 d0Mseg1035 6670 0 108623600 108625500 83484874 83487065 d0Mseg1038 6671 0 108633600 108635250 83494837 83496129 d0Mseg1039 6672 0 108648550 108650250 83505320 83508862 d0Mseg1041 6673 0 108699950 108701200 83585647 83587388 d0Mseg1042 6674 0 108782850 108784250 83727825 83729519 d0Mseg1044 6675 0 109353850 109355800 84227965 84231580 d0Mseg1050 6676 0 109423150 109424950 84256948 84258838 d0Mseg1052 6677 0 109713750 109717050 84498457 84501673 d0Mseg1054 6678 0 109871500 109872550 84689438 84690082 d0Mseg1055 6679 0 110118950 110120750 85033538 85033826 d0Mseg1056 6680 0 110140750 110142450 85084462 85086230 d0Mseg1057 6681 0 110421100 110422800 85412681 85416710 d0Mseg1059 6682 0 110801700 110803500 85933710 85934289 d0Mseg1061 6683 0 110851000 110852750 85990473 85990766 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91548215 d0Mseg1116 6702 0 119120350 119122050 92660966 92661229 d0Mseg1125 6703 0 119151350 119153150 92701270 92702362 d0Mseg1126 6704 0 119252400 119253650 92772141 92772699 d0Mseg1129 6705 0 119277800 119279600 92792140 92793911 d0Mseg1130 6706 0 119499300 119501050 92909526 92910271 d0Mseg1132 6707 0 119623200 119624900 93021134 93022275 d0Mseg1134 6708 0 119774200 119775900 93085263 93086408 d0Mseg1136 6709 0 119924950 119926650 93288572 93290474 d0Mseg1137 6710 0 123235550 123237150 93668059 93668633 d0Mseg1156 6711 0 124986350 124990400 94938081 94942255 d0Mseg1170 6712 0 125348250 125349850 95209971 95210989 d0Mseg1173 6713 0 126591250 126592900 96338747 96342353 d0Mseg1181 6714 0 126738250 126739450 96515899 96521050 d0Mseg1182 6715 0 127136000 127137750 96958145 96959898 d0Mseg1183 6716 0 127309150 127311100 97067208 97067837 d0Mseg1184 6717 0 127573000 127574700 97252973 97256101 d0Mseg1185 6718 0 127650050 127651700 97335209 97336831 d0Mseg1186 6719 0 127728000 127729800 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97915450 97916650 69630187 69631537 MMseg693 9867 M 97922950 97924000 69641034 69641198 MMseg694 9868 M 98138900 98140200 69884475 69884970 MMseg695 9869 M 98148200 98149400 69901327 69901844 MMseg696 9870 M 98577450 98581300 70441275 70445393 MMseg698 9871 M 98585400 98586850 70450799 70451047 MMseg699 9872 M 98834400 98836350 70751877 70753896 MMseg701 9873 M 98858150 98859400 70774823 70776014 MMseg702 9874 M 99043850 99047200 71129786 71133325 MMseg706 9875 M 99220750 99222500 71306682 71307389 MMseg708 9876 M 99236450 99237800 71324304 71325351 MMseg709 9877 M 99442050 99449500 71520901 71528981 MMseg711 9878 M 99506100 99507650 71574921 71576860 MMseg712 9879 M 99591750 99593400 71676716 71678233 MMseg713 9880 M 99610950 99612600 71694597 71696111 MMseg714 9881 M 99883150 99884950 72002658 72004150 MMseg715 9882 M 100128600 100130250 72162720 72164453 MMseg716 9883 M 100380450 100382750 72433129 72435454 MMseg721 9884 M 100516450 100519300 72666631 72669541 MMseg722 9885 M 100551250 100553100 72782399 72784236 MMseg723 9886 M 100889900 100891800 73754833 73756926 MMseg727 9887 M 100920200 100921800 73731598 73733113 MMseg728 9888 M 101016150 101017800 73640803 73642498 MMseg729 9889 M 101131950 101133750 73796281 73797015 MMseg731 9890 M 101287900 101288950 73973440 73973792 MMseg733 9891 M 101393850 101397150 74142849 74145904 MMseg734 9892 M 101440500 101442050 74185725 74187823 MMseg735 9893 M 101608350 101609750 74375221 74376789 MMseg737 9894 M 101624200 101625400 74384265 74384853 MMseg738 9895 M 101758800 101760500 74641629 74644014 MMseg739 9896 M 101883300 101884350 74799734 74800662 MMseg740 9897 M 101942950 101944550 74835923 74842905 MMseg742 9898 M 102400850 102402350 75938514 75938837 MMseg745 9899 M 102759850 102761150 76438759 76439779 MMseg747 9900 M 102957550 102961000 76703692 76704302 MMseg750 9901 M 103179700 103181050 77110993 77112114 MMseg752 9902 M 103222250 103223250 77165896 77166862 MMseg753 9903 M 103797050 103798750 77581313 77582989 MMseg759 9904 M 104041050 104042050 77920198 77923241 MMseg764 9905 M 104099950 104101250 77979366 77980418 MMseg765 9906 M 104463100 104465750 78411164 78413511 MMseg767 9907 M 104556500 104558250 78540264 78542569 MMseg769 9908 M 105066950 105068650 79699365 79701033 MMseg773 9909 M 105983300 105984500 79983579 79984013 MMseg780 9910 M 106050950 106052850 80129449 80129941 MMseg781 9911 M 106212850 106214050 80381063 80382416 MMseg782 9912 M 106612450 106613650 80774911 80776408 MMseg784 9913 M 106910650 106912100 81166951 81168123 MMseg786 9914 M 106955950 106957650 81327625 81328065 MMseg787 9915 M 107128550 107129600 81575374 81576152 MMseg788 9916 M 107389750 107390850 81863934 81864504 MMseg789 9917 M 107489050 107490200 81952668 81953486 MMseg790 9918 M 107965600 107967500 82707442 82708367 MMseg793 9919 M 108384350 108385650 83186738 83189593 MMseg794 9920 M 108496050 108497650 83311277 83312698 MMseg795 9921 M 108577100 108578150 83443492 83444507 MMseg796 9922 M 109472300 109473950 84325456 84326692 MMseg806 9923 M 109713400 109717700 84498068 84502366 MMseg809 9924 M 109867750 109869150 84686651 84687277 MMseg811 9925 M 110000500 110001900 84791126 84791744 MMseg812 9926 M 110207650 110208750 85181784 85182876 MMseg813 9927 M 110275150 110276350 85284751 85286471 MMseg815 9928 M 110386100 110387900 85386249 85387255 MMseg816 9929 M 110411350 110412600 85402933 85404168 MMseg817 9930 M 110439050 110440700 85456591 85457025 MMseg818 9931 M 110486750 110488100 85493114 85493510 MMseg819 9932 M 110560900 110562550 85625105 85627165 MMseg820 9933 M 110578450 110579900 85643982 85645513 MMseg821 9934 M 110610000 110611350 85713602 85714772 MMseg822 9935 M 110950700 110951700 86089353 86089588 MMseg823 9936 M 110992250 110993400 86140876 86141430 MMseg825 9937 M 111466400 111468000 86645506 86646572 MMseg827 9938 M 111514000 111515400 86681076 86681942 MMseg828 9939 M 111659150 111660350 86882669 86883398 MMseg829 9940 M 112319150 112320900 87221875 87224746 MMseg831 9941 M 112660900 112662600 87499718 87499920 MMseg832 9942 M 113009850 113011300 87649181 87650356 MMseg834 9943 M 114285300 114286700 88407592 88408662 MMseg839 9944 M 114516300 114517450 88631528 88632064 MMseg842 9945 M 116209950 116211450 89785792 89786465 MMseg852 9946 M 116417150 116419000 90000094 90001613 MMseg853 9947 M 117145150 117146450 90801422 90802560 MMseg856 9948 M 117349000 117350350 90980144 90981122 MMseg858 9949 M 117402250 117407550 91032710 91037887 MMseg860 9950 M 117618800 117620450 91331021 91331322 MMseg861 9951 M 117696400 117698100 91431278 91433116 MMseg863 9952 M 117701900 117702950 91446852 91450061 MMseg864 9953 M 117779000 117780650 91578843 91580649 MMseg865 9954 M 117808300 117809500 91613712 91614566 MMseg866 9955 M 117859750 117861300 91658180 91658535 MMseg867 9956 M 119283500 119285050 92797309 92803533 MMseg872 9957 M 119509650 119511600 92927439 92929203 MMseg874 9958 M 119858200 119859900 93177479 93180391 MMseg875 9959 M 123745200 123746200 93753922 93754506 MMseg882 9960 M 123952950 123954600 93884923 93887134 MMseg885 9961 M 125052000 125053100 94984431 94985552 MMseg892 9962 M 126010150 126011350 95714394 95714657 MMseg896 9963 M 126128050 126129100 95811359 95811866 MMseg897 9964 M 126134100 126135350 95818665 95819541 MMseg898 9965 M 126335050 126338850 95990007 95993886 MMseg900 9966 M 126476300 126478050 96169827 96171966 MMseg901 9967 M 126491100 126492850 96193486 96195772 MMseg902 9968 M 127858250 127860200 97533217 97534531 MMseg908 9969 M 127936450 127938050 97588006 97588532 MMseg910 9970 M 127990550 127991950 97624348 97625702 MMseg911 9971 M 128030850 128032500 97669577 97674316 MMseg912 9972 M 128097900 128099450 97730698 97731095 MMseg913 9973 M 128324700 128325800 97934513 97935472 MMseg914 9974 M 128536450 128538050 98150460 98151481 MMseg915 9975 M 128595000 128596400 98198615 98200051 MMseg916 9976 M 128642500 128643600 98230930 98231359 MMseg917 9977 M 128785100 128786450 98325940 98327127 MMseg918 9978 M 128802650 128803900 98337034 98338007 MMseg919 9979 M 128846350 128847450 98369489 98370229 MMseg920 9980 M 129381700 129383100 98906297 98906620 MMseg923 9981 M 129513350 129514750 99003189 99003961 MMseg925 9982 M 129596000 129597300 99106530 99107422 MMseg926 9983 M 129661550 129663100 99176861 99178047 MMseg927 9984 M 130093500 130094900 99529255 99530631 MMseg928 9985 M 130135200 130136250 99569187 99570014 MMseg929 9986 M 130209050 130210200 99650657 99651760 MMseg930 9987 M 130224300 130226000 99665979 99667550 MMseg931 9988 M 130320100 130321900 99767037 99767713 MMseg932 9989 M 130515200 130516800 99985954 99987439 MMseg933 9990 M 130648400 130649900 100131007 100131589 MMseg935 9991 M 130970750 130971750 100499362 100500206 MMseg939 9992 M 131743800 131745450 101396017 101397733 MMseg944 9993 M 132278600 132280000 101855946 101857354 MMseg948 9994 M 132446250 132447450 102776478 102777421 MMseg950 9995 M 132593250 132594900 102311063 102311634 MMseg952 9996 M 132614950 132616550 102339045 102340550 MMseg953 9997 M 132749600 132751200 102565461 102566671 MMseg956 9998 M 132778000 132779550 102610275 102611320 MMseg957 9999 M 133200550 133202600 102862543 102864520 MMseg965 10000 M 133252200 133253750 102917394 102918313 MMseg967 10001 M 133255450 133256950 102919433 102920854 MMseg968 10002 M 133422650 133424150 103097167 103098085 MMseg969 10003 M 133427250 133429050 103098720 103098948 MMseg970 10004 M 133524100 133525100 103353886 103354572 MMseg971 10005 M 133526500 133528150 103355958 103357778 MMseg972 10006 M 133650600 133655950 103495632 103500851 MMseg976 10007 M 133996300 133997600 103743455 103744895 MMseg978 10008 M 134056750 134057900 103771272 103775617 MMseg979 10009 M 134221850 134223150 103938931 103940001 MMseg980 10010 M 134369750 134371200 104055433 104056038 MMseg982 10011 M 134785850 134787600 104532420 104532985 MMseg987 10012 M 135011900 135012950 104711775 104712044 MMseg989 10013 M 135466650 135468200 105087702 105089227 MMseg991 10014 M 135535550 135537550 105193829 105196084 MMseg992 10015 M 136318750 136320400 106148299 106149674 MMseg996 10016 M 136514200 136515550 106345421 106346746 MMseg998 10017 M 136568750 136570250 106410404 106411812 MMseg1000 10018 M 136600400 136602000 106453320 106454986 MMseg1002 10019 M 136627450 136628700 106471463 106472244 MMseg1003 10020 M 136630700 136632400 106475854 106477674 MMseg1004 10021 M 136727100 136728350 106596842 106597598 MMseg1005 10022 M 136745700 136746800 106626313 106627239 MMseg1006 10023 M 136794150 136795900 106677025 106678088 MMseg1007 10024 M 136805700 136807600 106687753 106688404 MMseg1009 10025 M 136810900 136814000 106691572 106694448 MMseg1010 10026 M 136887000 136888100 106758820 106761610 MMseg1011 10027 M 137133700 137135950 107019244 107021093 MMseg1013 10028 M 137149650 137150700 107032531 107033387 MMseg1014 10029 M 137168150 137169300 107036909 107037517 MMseg1015 10030 M 137249050 137250750 107125059 107127384 MMseg1016 10031 M 137459150 137460700 107309195 107309955 MMseg1018 10032 M 137509650 137511350 107360048 107361592 MMseg1019 10033 M 137518150 137519300 107367247 107368380 MMseg1020 10034 M 137609150 137610750 107407807 107409521 MMseg1021 10035 M 137661150 137662400 107455959 107457400 MMseg1022 10036 M 137814550 137815750 107588053 107588914 MMseg1023 10037 M 137866850 137868200 107625514 107625717 MMseg1024 10038 M 137909200 137910750 107682283 107683870 MMseg1025 10039 M 138155550 138162100 107975275 107981988 MMseg1027 10040 M 138344900 138346350 108371115 108371394 MMseg1028 10041 M 138497500 138499200 108595607 108599114 MMseg1030 10042 M 138577300 138578350 108684940 108685646 MMseg1031 10043 M 138655950 138657600 108773752 108776368 MMseg1033 10044 M 138861000 138862150 109017789 109018788 MMseg1034 10045 M 138943650 138945000 109104066 109104577 MMseg1035 10046 M 139058150 139059900 109206160 109206963 MMseg1036 10047 M 139234500 139235900 109378304 109379245 MMseg1037 10048 M 139316300 139317700 109463676 109465986 MMseg1038 10049 M 139430050 139431350 109591776 109592916 MMseg1039 10050 M 139458550 139459900 109629485 109630972 MMseg1040 10051 M 139635450 139636700 109879988 109880299 MMseg1041 10052 M 139697400 139698650 109805172 109805516 MMseg1042 10053 M 139745550 139747050 109943807 109944715 MMseg1043 10054 M 139987100 139988850 110226213 110228387 MMseg1044 10055 M 140083250 140085000 110315590 110316674 MMseg1045 10056 M 140155900 140157150 110398096 110399281 MMseg1046 10057 M 140262750 140264100 110514566 110515987 MMseg1047 10058 M 140324750 140325800 110599252 110599767 MMseg1048 10059 M 141011100 141014550 111234907 111235760 Mmseg1050 10060 M 141122750 141124850 111325473 111327688 Mmseg1051 10061 M 141629350 141630950 111773174 111780006 Mmseg1052 10062 M 141813150 141814300 111949839 111950020 Mmseg1054 10063 M 142949600 142951350 113265897 113266178 MMseg1056 10064 M 143325300 143326350 113762632 113762826 MMseg1058 10065 M 143346200 143347600 113770324 113771336 MMseg1059 10066 M 143396550 143399200 113818163 113820605 MMseg1060 10067 M 143828450 143829600 114247925 114249029 MMseg1062 10068 M 143832100 143833150 114251373 114252988 MMseg1063 10069 M 143915100 143916350 114357412 114358718 MMseg1064 10070 M 147004500 147006350 55033828 55036153 MMseg1067 10071 M 147499650 147500750 54497893 54498387 MMseg1070 10072 M 147668750 147670150 54319993 54320661 MMseg1074 10073 M 147998550 148000100 54028933 54029207 MMseg1075 10074 M 148054700 148056250 53988742 53989670 MMseg1076 10075 M 148457400 148458950 53441694 53442006 MMseg1077 10076 M 148511500 148512800 53393244 53394295 MMseg1078 10077 M 148514600 148516600 53389862 53391858 MMseg1079 10078 M 148666800 148668500 53253670 53255198 MMseg1080 10079 M 149107700 149109050 9857299 9859449 MMseg1085 10080 M 149139800 149141150 9829894 9830916 MMseg1086 10081 M 149517250 149519000 55584450 55586933 MMseg1089 10082 M 151469900 151471600 148630369 148630574 MMseg1102 10083 M 152044650 152046100 23364640 23366242 MMseg1103 10084 M 152055650 152060200 23350792 23355162 MMseg1104 10085 M 152070600 152071700 23340912 23342050 MMseg1105 10086 M 152133950 152135050 23302181 23303309 MMseg1106 10087 M 152611900 152613600 22996612 22998738 MMseg1107 10088 M 152708250 152709500 22922991 22924300 MMseg1108 10089 M 153097150 153098600 22635976 22637590 MMseg1109 10090 M 153259450 153260850 22514326 22516734 MMseg1110 10091 M 153310450 153311550 22476010 22476361 MMseg1112 10092 M 153457200 153458500 22354781 22356450 MMseg1113 10093 M 153851750 153853150 22050675 22052078 MMseg1114 10094 M 154266400 154267500 21664266 21665295 MMseg1115 10095 M 154354450 154356600 21536146 21538465 MMseg1116 10096 M 154359850 154360950 21531795 21532662 MMseg1117 10097 M 154478850 154482050 21391694 21395006 MMseg1118 10098 M 154979800 154981450 20881821 20883114 MMseg1120 10099 M 155175600 155177250 20686110 20687356 MMseg1121 10100 M 155592950 155594500 20380196 20381928 MMseg1123 10101 M 155850850 155855650 20133359 20135681 MMseg1125 10102 M 155914900 155916100 20047728 20050675 MMseg1127 10103 M 155947200 155948500 20014121 20014391 MMseg1128 10104 M 156050800 156052150 19916475 19916777 MMseg1129 10105 M 156173800 156175150 19790322 19791596 MMseg1130 10106 M 156332900 156334600 19632378 19633538 MMseg1131 10107 M 156575900 156577400 19361539 19362523 MMseg1132 10108 M 156615300 156616950 19336717 19337267 MMseg1133 10109 M 156915950 156917400 19028709 19030593 MMseg1134 10110 M 156939550 156941000 19001813 19003365 MMseg1135 10111 M 157075450 157077200 18806997 18818223 MMseg1136 10112 M 157082600 157084300 18797567 18799687 MMseg1137 10113 M 157252000 157253500 18639528 18641140 MMseg1138 10114 M 157291850 157293050 18603679 18604531 MMseg1139 10115 M 157732500 157734300 18240144 18240870 MMseg1142 10116 M 157974800 157976550 18021746 18023162 MMseg1143 10117 M 158154450 158157550 17876984 17879845 MMseg1144 10118 M 158259100 158260650 17766275 17767756 MMseg1145 10119 M 158345350 158347650 17672974 17675261 MMseg1146 10120 M 158379950 158381000 17632722 17634330 MMseg1147 10121 M 158599200 158600700 17390657 17392078 MMseg1148 10122 M 158720550 158721550 17257216 17257769 MMseg1150 10123 M 158851550 158852850 17168374 17169701 MMseg1151 10124 M 158949900 158951400 17087437 17088674 MMseg1153 10125 M 158959950 158961350 17070128 17071066 MMseg1154 10126 M 159080250 159082650 16963853 16966209 MMseg1156 10127 M 159203550 159205400 16883371 16884266 MMseg1157 10128 M 159235100 159236450 16846153 16846456 MMseg1158 10129 M 159319550 159321300 16753321 16754454 MMseg1159 10130 M 159776150 159777650 16314342 16314768 MMseg1161 10131 M 160001250 160002400 16130429 16131585 MMseg1162 10132 M 160115400 160116950 16030242 16031393 MMseg1163 10133 M 160365250 160367100 15848626 15850676 MMseg1167 10134 M 160861100 160862850 15347026 15349529 MMseg1169 10135 M 161072900 161074050 15189814 15190425 MMseg1170 10136 M 161227600 161229100 15093224 15094638 MMseg1171 10137 M 161323850 161324950 14993608 14994082 MMseg1172 10138 M 161357200 161358200 14950467 14951475 MMseg1173 10139 M 161419650 161421200 14882869 14883777 MMseg1174 10140 M 161572150 161573150 14745213 14745814 MMseg1176 10141 M 161921600 161922900 14448856 14449148 MMseg1178 10142 M 162336100 162337150 14235632 14237829 MMseg1179 10143 M 162434450 162435850 14163737 14164131 MMseg1180 10144 M 162676200 162678100 13955587 13957519 MMseg1181 10145 M 162717750 162718800 13915314 13916110 MMseg1182 10146 M 163433400 163434550 13221669 13222560 MMseg1184 10147 M 163630900 163632050 13007637 13008082 MMseg1185 10148 M 163647200 163648550 12991689 12993122 MMseg1186 10149 M 163730600 163731650 12909774 12910724 MMseg1187 10150 M 163748650 163750400 12902034 12902693 MMseg1188 10151 M 163819450 163820450 12809689 12810746 MMseg1189 10152 M 163923300 163924500 12729068 12729246 MMseg1190 10153 M 164201450 164202450 12484206 12484349 MMseg1192 10154 M 164366800 164368400 12329590 12331008 MMseg1193 10155 M 164471750 164472800 12238770 12240904 MMseg1195 10156 M 164583450 164585100 12138301 12139476 MMseg1197 10157 M 164589550 164590900 12134109 12134814 MMseg1198 10158 M 164746300 164747750 12011972 12013034 MMseg1199 10159 M 164964150 164965600 11881888 11882967 MMseg1200 10160 M 165094850 165096750 11790174 11790869 MMseg1201 10161 M 165232550 165235100 11681898 11684654 MMseg1202 10162 M 165245650 165247050 11670574 11671232 MMseg1203 10163 M 165283100 165284700 11636638 11638291 MMseg1204 10164 M 165377800 165379300 11544817 11547072 MMseg1205 10165 M 165445000 165446600 11469150 11471127 MMseg1207 10166 M 165690100 165691550 11200197 11202213 MMseg1210 10167 M 166306750 166308500 10599802 10602471 MMseg1211 10168

For Table JVC: c/d: cell/day; 0, day 0 ES cells; 7, day 7 ES cells; M, MEF cells. These sites did not have human liftovers sequences corresponding to the empirically identified mouse binding sites.

TABLE IVC Mouse Moderate Sites c/d start end segment 0 3013250 3014900 d0Mseg1 0 3040500 3042200 d0Mseg2 0 3199600 3201300 d0Mseg3 0 3888800 3890200 d0Mseg4 0 4299550 4301150 d0Mseg5 0 4864500 4865900 d0Mseg6 0 5043950 5046250 d0Mseg7 0 5156500 5158150 d0Mseg8 0 5243750 5245500 d0Mseg9 0 5280750 5282600 d0Mseg10 0 5365800 5367250 d0Mseg11 0 5548600 5550350 d0Mseg13 0 5557950 5559800 d0Mseg14 0 6129350 6130550 d0Mseg19 0 6189300 6190350 d0Mseg20 0 7598600 7600450 d0Mseg35 0 7656650 7658100 d0Mseg36 0 7892450 7894150 d0Mseg37 0 8153500 8154650 d0Mseg38 0 8274000 8275850 d0Mseg39 0 8468900 8470750 d0Mseg40 0 8514150 8516000 d0Mseg41 0 8572300 8573950 d0Mseg42 0 8665550 8667200 d0Mseg43 0 9129150 9130900 d0Mseg47 0 9169600 9171000 d0Mseg48 0 9600200 9602000 d0Mseg49 0 9654550 9656200 d0Mseg52 0 10265600 10267300 d0Mseg61 0 11349600 11351300 d0Mseg72 0 12219450 12220600 d0Mseg90 0 12441150 12442800 d0Mseg91 0 12966750 12968350 d0Mseg92 0 13991600 13993200 d0Mseg102 0 14101700 14103350 d0Mseg103 0 14494250 14496000 d0Mseg106 0 14735800 14737450 d0Mseg108 0 14938450 14939950 d0Mseg112 0 15005250 15006800 d0Mseg113 0 15180550 15182200 d0Mseg114 0 15539300 15541050 d0Mseg117 0 16907700 16909450 d0Mseg123 0 16933400 16935050 d0Mseg124 0 18051250 18052650 d0Mseg128 0 18099850 18101600 d0Mseg129 0 18127350 18128500 d0Mseg130 0 18326150 18327150 d0Mseg131 0 18349150 18350600 d0Mseg132 0 18380000 18381700 d0Mseg133 0 18525150 18526200 d0Mseg134 0 18588750 18590450 d0Mseg135 0 18698450 18700250 d0Mseg136 0 18705600 18706950 d0Mseg137 0 18946750 18948350 d0Mseg139 0 19045350 19047000 d0Mseg141 0 19180550 19182250 d0Mseg142 0 19225150 19226900 d0Mseg143 0 19584700 19586600 d0Mseg145 0 19612750 19614150 d0Mseg146 0 19729650 19731250 d0Mseg148 0 19896650 19898550 d0Mseg150 0 20768800 20769850 d0Mseg153 0 20937650 20940750 d0Mseg154 0 21048500 21050250 d0Mseg155 0 21388750 21390350 d0Mseg159 0 21695650 21697500 d0Mseg160 0 21731400 21733200 d0Mseg161 0 21795550 21797450 d0Mseg162 0 21915400 21917000 d0Mseg164 0 21966550 21968200 d0Mseg165 0 22058700 22060400 d0Mseg166 0 22102100 22103850 d0Mseg167 0 22222300 22223750 d0Mseg172 0 23200050 23201850 d0Mseg181 0 23833750 23835150 d0Mseg184 0 23920150 23921750 d0Mseg185 0 24065850 24067450 d0Mseg186 0 24196000 24197650 d0Mseg187 0 25178800 25179900 d0Mseg188 0 25182350 25184100 d0Mseg189 0 25237450 25239050 d0Mseg190 0 25965050 25966450 d0Mseg191 0 25997800 25999650 d0Mseg192 0 26155850 26157700 d0Mseg193 0 27398150 27399800 d0Mseg194 0 30557050 30558950 d0Mseg195 0 30626550 30628300 d0Mseg196 0 32060900 32062500 d0Mseg197 0 33110450 33111650 d0Mseg198 0 33635000 33636550 d0Mseg199 0 33945750 33947550 d0Mseg202 0 34161650 34163250 d0Mseg203 0 34449850 34451650 d0Mseg205 0 34547150 34549000 d0Mseg207 0 34703150 34704450 d0Mseg210 0 34754750 34758750 d0Mseg211 0 34840000 34841700 d0Mseg212 0 34927800 34929000 d0Mseg213 0 34999550 35001250 d0Mseg214 0 35011550 35013300 d0Mseg215 0 35074650 35076350 d0Mseg216 0 35167550 35169200 d0Mseg217 0 35253900 35255850 d0Mseg218 0 35273000 35274700 d0Mseg219 0 35533100 35535000 d0Mseg220 0 36097300 36098550 d0Mseg229 0 36243100 36244800 d0Mseg231 0 36272000 36273000 d0Mseg232 0 36331400 36332450 d0Mseg233 0 36363600 36365350 d0Mseg234 0 36428650 36430300 d0Mseg235 0 36697800 36699550 d0Mseg237 0 37126800 37128500 d0Mseg239 0 37220600 37222150 d0Mseg240 0 37754100 37756000 d0Mseg241 0 37808500 37810100 d0Mseg243 0 37893300 37894950 d0Mseg245 0 38033100 38034650 d0Mseg246 0 38153950 38155650 d0Mseg247 0 38268000 38269650 d0Mseg248 0 38427700 38429500 d0Mseg249 0 38451300 38453000 d0Mseg250 0 38549550 38551200 d0Mseg252 0 39290250 39291450 d0Mseg258 0 39392900 39394600 d0Mseg260 0 39490350 39492000 d0Mseg261 0 39682450 39684100 d0Mseg264 0 40276600 40278350 d0Mseg273 0 40562500 40564300 d0Mseg277 0 40765100 40766850 d0Mseg278 0 41442300 41444150 d0Mseg286 0 41556450 41558050 d0Mseg288 0 41780950 41782300 d0Mseg290 0 41889350 41891000 d0Mseg291 0 41971850 41973650 d0Mseg292 0 41976150 41977200 d0Mseg293 0 42412450 42414150 d0Mseg294 0 42839400 42841100 d0Mseg295 0 42886550 42888200 d0Mseg296 0 42916700 42918400 d0Mseg297 0 43051500 43052900 d0Mseg298 0 43144850 43146550 d0Mseg299 0 43152750 43154600 d0Mseg300 0 43214150 43215250 d0Mseg301 0 43569750 43571350 d0Mseg302 0 43666950 43668750 d0Mseg303 0 43689450 43691150 d0Mseg304 0 43784050 43785800 d0Mseg305 0 43971000 43972900 d0Mseg307 0 43980600 43982400 d0Mseg308 0 44065700 44067250 d0Mseg309 0 44279100 44280750 d0Mseg310 0 44987050 44988900 d0Mseg317 0 45953400 45955000 d0Mseg326 0 46107500 46109150 d0Mseg327 0 46152600 46154350 d0Mseg329 0 46451250 46453300 d0Mseg333 0 46468750 46470500 d0Mseg334 0 46499600 46501300 d0Mseg335 0 46683350 46684350 d0Mseg336 0 46774000 46775700 d0Mseg337 0 46911200 46912900 d0Mseg344 0 47334200 47335900 d0Mseg351 0 47348150 47349900 d0Mseg352 0 47725700 47728850 d0Mseg354 0 47894500 47896200 d0Mseg355 0 47991050 47992300 d0Mseg356 0 48382050 48383500 d0Mseg360 0 49215000 49216800 d0Mseg371 0 49325650 49327300 d0Mseg372 0 50042400 50043500 d0Mseg379 0 50203300 50206100 d0Mseg382 0 50250650 50252450 d0Mseg383 0 50623900 50625700 d0Mseg388 0 50727600 50729500 d0Mseg390 0 50782000 50783700 d0Mseg391 0 50809750 50810950 d0Mseg392 0 50926250 50928200 d0Mseg393 0 50937400 50939200 d0Mseg394 0 51007100 51008750 d0Mseg395 0 51075300 51080100 d0Mseg397 0 51094900 51096750 d0Mseg398 0 51124650 51126300 d0Mseg399 0 51185500 51187350 d0Mseg400 0 51276800 51281250 d0Mseg401 0 51291900 51293600 d0Mseg402 0 51408950 51410550 d0Mseg403 0 51546600 51548350 d0Mseg404 0 52539900 52541600 d0Mseg405 0 52681550 52683150 d0Mseg406 0 52756550 52758300 d0Mseg407 0 52760800 52762650 d0Mseg408 0 52825900 52827150 d0Mseg409 0 52951300 52953000 d0Mseg410 0 53077650 53079250 d0Mseg411 0 53181550 53182550 d0Mseg412 0 53201550 53203300 d0Mseg413 0 53355200 53357250 d0Mseg414 0 53783450 53785150 d0Mseg416 0 55102050 55103050 d0Mseg427 0 55258100 55259800 d0Mseg429 0 55322800 55324500 d0Mseg431 0 55453850 55455650 d0Mseg432 0 56609400 56610950 d0Mseg444 0 57133200 57136250 d0Mseg450 0 57670200 57671950 d0Mseg456 0 58108800 58110500 d0Mseg462 0 58437300 58439000 d0Mseg466 0 58580850 58582300 d0Mseg467 0 58951850 58952950 d0Mseg470 0 59288200 59289850 d0Mseg473 0 59516900 59518800 d0Mseg476 0 59522850 59524500 d0Mseg477 0 59602250 59603600 d0Mseg478 0 59640650 59642600 d0Mseg479 0 59840600 59842450 d0Mseg480 0 59877800 59879600 d0Mseg481 0 59949400 59951400 d0Mseg482 0 59992700 59994400 d0Mseg483 0 60058250 60060100 d0Mseg484 0 60265700 60267300 d0Mseg486 0 60360500 60362250 d0Mseg487 0 60389700 60391350 d0Mseg488 0 60425250 60426950 d0Mseg489 0 60531700 60533350 d0Mseg490 0 60613450 60615300 d0Mseg491 0 60756100 60757800 d0Mseg493 0 60776250 60777950 d0Mseg494 0 60900650 60902100 d0Mseg495 0 60921800 60923550 d0Mseg496 0 61005150 61006750 d0Mseg497 0 61024750 61026500 d0Mseg499 0 61144100 61145500 d0Mseg500 0 61305700 61307400 d0Mseg502 0 61787100 61788700 d0Mseg504 0 62017400 62018450 d0Mseg506 0 62119600 62121400 d0Mseg507 0 62229900 62231500 d0Mseg508 0 62272100 62273300 d0Mseg509 0 62310850 62312200 d0Mseg510 0 62346700 62348300 d0Mseg512 0 62443800 62445600 d0Mseg513 0 62626900 62628700 d0Mseg514 0 63125250 63126400 d0Mseg518 0 63147950 63149600 d0Mseg519 0 63180600 63182250 d0Mseg520 0 63305150 63306900 d0Mseg521 0 63313750 63315550 d0Mseg522 0 63465550 63467300 d0Mseg524 0 63480800 63482350 d0Mseg525 0 63500200 63501950 d0Mseg526 0 63788250 63789850 d0Mseg529 0 64122350 64123950 d0Mseg532 0 64222650 64224400 d0Mseg535 0 64545950 64547100 d0Mseg536 0 64758250 64759950 d0Mseg537 0 64815850 64817600 d0Mseg538 0 64947250 64948850 d0Mseg540 0 65108800 65110550 d0Mseg542 0 65195350 65196400 d0Mseg544 0 65306400 65308150 d0Mseg545 0 65420550 65422200 d0Mseg547 0 65457400 65459200 d0Mseg548 0 65636550 65638450 d0Mseg550 0 66062150 66063950 d0Mseg552 0 66329550 66331500 d0Mseg556 0 66502450 66504500 d0Mseg557 0 67191500 67193150 d0Mseg567 0 67382350 67384050 d0Mseg569 0 67761400 67763200 d0Mseg571 0 68225650 68227450 d0Mseg574 0 68443350 68444800 d0Mseg578 0 68581500 68583200 d0Mseg579 0 68715750 68717450 d0Mseg580 0 68892300 68893500 d0Mseg581 0 68924800 68926650 d0Mseg583 0 68933900 68935650 d0Mseg584 0 69636950 69638700 d0Mseg590 0 69769550 69771250 d0Mseg591 0 70302000 70303900 d0Mseg593 0 70340800 70342250 d0Mseg594 0 70406500 70408450 d0Mseg595 0 70456600 70457800 d0Mseg596 0 70617550 70619400 d0Mseg597 0 71416350 71418100 d0Mseg606 0 71439900 71441500 d0Mseg607 0 71717150 71718900 d0Mseg610 0 71732200 71733900 d0Mseg611 0 71766550 71768550 d0Mseg612 0 71772050 71773900 d0Mseg613 0 72261750 72263350 d0Mseg614 0 72319900 72321600 d0Mseg615 0 72719800 72721500 d0Mseg617 0 72791900 72793650 d0Mseg618 0 72979050 72980550 d0Mseg619 0 73026250 73027900 d0Mseg620 0 73168900 73170500 d0Mseg621 0 73205500 73207200 d0Mseg622 0 73209450 73210700 d0Mseg623 0 73214300 73216200 d0Mseg624 0 73395450 73396850 d0Mseg626 0 73814500 73816250 d0Mseg628 0 73985200 73986950 d0Mseg630 0 74090600 74092300 d0Mseg631 0 74099000 74100650 d0Mseg632 0 74254350 74255850 d0Mseg634 0 74383200 74384900 d0Mseg636 0 74388350 74390050 d0Mseg637 0 74422450 74424050 d0Mseg638 0 74950550 74952500 d0Mseg642 0 74989200 74991000 d0Mseg643 0 75264800 75266500 d0Mseg644 0 75302750 75304800 d0Mseg645 0 75343350 75345300 d0Mseg646 0 75503350 75505000 d0Mseg647 0 75876500 75878100 d0Mseg649 0 76059750 76061450 d0Mseg650 0 76099950 76102350 d0Mseg651 0 76774750 76776700 d0Mseg657 0 76972550 76973900 d0Mseg659 0 77056000 77057750 d0Mseg660 0 77238250 77239850 d0Mseg661 0 77280800 77282500 d0Mseg662 0 77413950 77415650 d0Mseg663 0 77477200 77479100 d0Mseg664 0 77630850 77632150 d0Mseg666 0 77648800 77650550 d0Mseg667 0 77713150 77714800 d0Mseg669 0 77795650 77797250 d0Mseg670 0 77836600 77838250 d0Mseg671 0 78041500 78042800 d0Mseg672 0 78410650 78412350 d0Mseg673 0 78415050 78416650 d0Mseg674 0 78677450 78679000 d0Mseg675 0 78723050 78724800 d0Mseg676 0 78727050 78728050 d0Mseg677 0 78814000 78815700 d0Mseg679 0 78817450 78819400 d0Mseg680 0 78826850 78828450 d0Mseg681 0 79118850 79120500 d0Mseg683 0 79307350 79309100 d0Mseg685 0 79320650 79322350 d0Mseg686 0 79333950 79335550 d0Mseg687 0 79367850 79369450 d0Mseg688 0 79413200 79414800 d0Mseg689 0 79439900 79441550 d0Mseg690 0 79505600 79507350 d0Mseg691 0 79537450 79539250 d0Mseg692 0 79682500 79684150 d0Mseg694 0 79810850 79812850 d0Mseg695 0 79876400 79878050 d0Mseg697 0 80343250 80344500 d0Mseg700 0 80478750 80480500 d0Mseg701 0 80586950 80588350 d0Mseg702 0 80859950 80861650 d0Mseg703 0 82754950 82756550 d0Mseg716 0 83059750 83060800 d0Mseg719 0 83585800 83587900 d0Mseg723 0 83604000 83605800 d0Mseg724 0 83659000 83660750 d0Mseg725 0 83681100 83682650 d0Mseg727 0 83737900 83739700 d0Mseg728 0 83875350 83877050 d0Mseg729 0 83906200 83907650 d0Mseg730 0 84393250 84394900 d0Mseg737 0 85048800 85050500 d0Mseg746 0 85486100 85487750 d0Mseg754 0 85591450 85592850 d0Mseg755 0 85738950 85740600 d0Mseg756 0 85852450 85853600 d0Mseg758 0 85965200 85969050 d0Mseg759 0 86021850 86023500 d0Mseg760 0 86380450 86382050 d0Mseg761 0 86796950 86798800 d0Mseg764 0 86831250 86832900 d0Mseg765 0 87010550 87012150 d0Mseg768 0 87068300 87069850 d0Mseg769 0 87112450 87114100 d0Mseg770 0 87268250 87270000 d0Mseg772 0 87454700 87456000 d0Mseg773 0 87649100 87650300 d0Mseg775 0 87694300 87696050 d0Mseg776 0 87708500 87710300 d0Mseg777 0 87783600 87785350 d0Mseg779 0 87856000 87857700 d0Mseg780 0 87874500 87876200 d0Mseg781 0 87996150 87997750 d0Mseg783 0 88041950 88042950 d0Mseg784 0 88141300 88142900 d0Mseg785 0 88269800 88272300 d0Mseg787 0 88301600 88303450 d0Mseg788 0 88322200 88324100 d0Mseg789 0 88387200 88388850 d0Mseg790 0 88437450 88439050 d0Mseg791 0 88457250 88459100 d0Mseg792 0 88538350 88539950 d0Mseg793 0 88656750 88657950 d0Mseg794 0 88669850 88670850 d0Mseg795 0 88763350 88764550 d0Mseg796 0 88986100 88987700 d0Mseg797 0 89117600 89119300 d0Mseg798 0 89128400 89130050 d0Mseg799 0 89440850 89442550 d0Mseg801 0 89487850 89489250 d0Mseg803 0 89600550 89602250 d0Mseg804 0 89838800 89840450 d0Mseg808 0 90230650 90233850 d0Mseg810 0 90336850 90337850 d0Mseg813 0 91224550 91226300 d0Mseg817 0 91739800 91740800 d0Mseg822 0 91793300 91795350 d0Mseg823 0 92015650 92017400 d0Mseg825 0 92019050 92022950 d0Mseg826 0 92030050 92031750 d0Mseg827 0 92036200 92038050 d0Mseg828 0 92531400 92533100 d0Mseg829 0 92699450 92701050 d0Mseg831 0 92820250 92821950 d0Mseg833 0 92937550 92939400 d0Mseg835 0 93183200 93184850 d0Mseg837 0 93261400 93263050 d0Mseg838 0 93276700 93278350 d0Mseg839 0 93482500 93484200 d0Mseg840 0 93841300 93843000 d0Mseg842 0 93858250 93860050 d0Mseg843 0 93898000 93899900 d0Mseg844 0 93976850 93978600 d0Mseg846 0 94103700 94105300 d0Mseg847 0 94138750 94140600 d0Mseg848 0 94255700 94257350 d0Mseg849 0 94259300 94261000 d0Mseg850 0 94462750 94465550 d0Mseg851 0 94468300 94470000 d0Mseg852 0 94794950 94796450 d0Mseg855 0 94871900 94873450 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101221650 101222800 d0Mseg958 0 101257400 101258550 d0Mseg959 0 101267550 101269250 d0Mseg960 0 101627600 101629250 d0Mseg963 0 101795650 101797350 d0Mseg965 0 101906600 101907600 d0Mseg966 0 102103500 102105200 d0Mseg970 0 102214950 102217750 d0Mseg971 0 102377950 102379550 d0Mseg974 0 102401700 102402700 d0Mseg975 0 102729050 102730850 d0Mseg977 0 102951750 102953500 d0Mseg978 0 103354300 103355650 d0Mseg981 0 103375500 103377250 d0Mseg982 0 103461400 103463100 d0Mseg984 0 103532250 103534050 d0Mseg985 0 103593900 103595600 d0Mseg986 0 103674400 103676100 d0Mseg987 0 103679000 103681250 d0Mseg988 0 103713350 103715150 d0Mseg989 0 103748650 103750400 d0Mseg990 0 103838500 103840200 d0Mseg992 0 103911200 103913150 d0Mseg994 0 104191150 104192950 d0Mseg996 0 104241650 104243300 d0Mseg997 0 104518400 104520050 d0Mseg998 0 104550000 104551400 d0Mseg999 0 104820600 104822350 d0Mseg1002 0 105116250 105117350 d0Mseg1005 0 105490300 105491900 d0Mseg1006 0 105626050 105627750 d0Mseg1007 0 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77685850 77687000 MMseg518 M 78018300 78019700 MMseg519 M 78672950 78674250 MMseg523 M 78809700 78811000 MMseg524 M 78844550 78845800 MMseg525 M 79106900 79108550 MMseg527 M 79305500 79306550 MMseg529 M 79523750 79525400 MMseg531 M 79823200 79824450 MMseg532 M 80564550 80566300 MMseg536 M 80637150 80638600 MMseg537 M 80913700 80914900 MMseg538 M 82552300 82553650 MMseg550 M 83364850 83366000 MMseg556 M 83371600 83373350 MMseg557 M 83511200 83513850 MMseg558 M 83639250 83640500 MMseg560 M 84621550 84623100 MMseg566 M 85395650 85398150 MMseg573 M 85649200 85650850 MMseg575 M 85753300 85754350 MMseg577 M 86013300 86014450 MMseg578 M 87286950 87288150 MMseg583 M 87334850 87336400 MMseg584 M 87366750 87368350 MMseg585 M 87410800 87411950 MMseg586 M 87513100 87515100 MMseg587 M 87643150 87644900 MMseg588 M 88092300 88093550 MMseg590 M 88288000 88289700 MMseg591 M 88347150 88348500 MMseg592 M 88473950 88475600 MMseg593 M 88760900 88762400 MMseg594 M 89226800 89228700 MMseg595 M 89285950 89287000 MMseg596 M 90006500 90008250 MMseg600 M 90150550 90151950 MMseg601 M 90231250 90232550 MMseg603 M 90234150 90235500 MMseg604 M 90474100 90475400 MMseg606 M 91423400 91425250 MMseg617 M 91471600 91473200 MMseg618 M 91533550 91536400 MMseg621 M 91665450 91666700 MMseg625 M 91824650 91826250 MMseg627 M 91995750 91997350 MMseg631 M 92172350 92174150 MMseg632 M 92195100 92196750 MMseg633 M 92301050 92302350 MMseg634 M 92578950 92580750 MMseg636 M 92588050 92589650 MMseg637 M 92683900 92685200 MMseg639 M 92863400 92864450 MMseg640 M 93050700 93051900 MMseg642 M 93104900 93106750 MMseg643 M 93398050 93399150 MMseg647 M 93400750 93401800 MMseg648 M 93469050 93470400 MMseg649 M 93528700 93530300 MMseg650 M 93957800 93958900 MMseg655 M 94010400 94011500 MMseg656 M 94108050 94109750 MMseg657 M 94187400 94188650 MMseg658 M 94224450 94226000 MMseg659 M 94268400 94269750 MMseg660 M 94482050 94483700 MMseg661 M 94993450 94995100 MMseg663 M 95214700 95215900 MMseg664 M 95262100 95263800 MMseg666 M 95282100 95283700 MMseg667 M 95311950 95313750 MMseg668 M 95672450 95673950 MMseg670 M 96123950 96125100 MMseg672 M 97391250 97392350 MMseg685 M 97748050 97749300 MMseg688 M 97849550 97851300 MMseg691 M 98207550 98208550 MMseg697 M 98801500 98802800 MMseg700 M 98941550 98942600 MMseg703 M 98974200 98976450 MMseg704 M 99033300 99034500 MMseg705 M 99133450 99134700 MMseg707 M 99409750 99410850 MMseg710 M 100233950 100235250 MMseg717 M 100239700 100240700 MMseg718 M 100251300 100253550 MMseg719 M 100340950 100342500 MMseg720 M 100602700 100604000 MMseg724 M 100639200 100646300 MMseg725 M 100781050 100782700 MMseg726 M 101106000 101107850 MMseg730 M 101148650 101150250 MMseg732 M 101530950 101532550 MMseg736 M 101898700 101900050 MMseg741 M 102262900 102264050 MMseg743 M 102368400 102370100 MMseg744 M 102474500 102475800 MMseg746 M 102788050 102789300 MMseg748 M 102856700 102857950 MMseg749 M 103127200 103130750 MMseg751 M 103490600 103491700 MMseg754 M 103526150 103527600 MMseg755 M 103533950 103535550 MMseg756 M 103581350 103582850 MMseg757 M 103678550 103681250 MMseg758 M 103845250 103846300 MMseg760 M 103867650 103869200 MMseg761 M 103917000 103918550 MMseg762 M 103922650 103924250 MMseg763 M 104411000 104412350 MMseg766 M 104468900 104470050 MMseg768 M 104772600 104773900 MMseg770 M 104848950 104849950 MMseg771 M 105027400 105028450 MMseg772 M 105207500 105208750 MMseg774 M 105220800 105222600 MMseg775 M 105377450 105378800 MMseg776 M 105384550 105385950 MMseg777 M 105388100 105389550 MMseg778 M 105658650 105660100 MMseg779 M 106215950 106217450 MMseg783 M 106746100 106747800 MMseg785 M 107668600 107670350 MMseg791 M 107836650 107838150 MMseg792 M 108610550 108612400 MMseg797 M 108827450 108828700 MMseg798 M 108963050 108964600 MMseg799 M 108968700 108970300 MMseg800 M 108997650 108998950 MMseg801 M 109018600 109019600 MMseg802 M 109037600 109038600 MMseg803 M 109220150 109221500 MMseg804 M 109436500 109438250 MMseg805 M 109526200 109527800 MMseg807 M 109562700 109563750 MMseg808 M 109773250 109774900 MMseg810 M 110255000 110256750 MMseg814 M 110962200 110963200 MMseg824 M 111271550 111273200 MMseg826 M 111924150 111925500 MMseg830 M 112983650 112985150 MMseg833 M 113241050 113242450 MMseg835 M 113461050 113462100 MMseg836 M 113730600 113732150 MMseg837 M 114172850 114174300 MMseg838 M 114387400 114388800 MMseg840 M 114413850 114415200 MMseg841 M 114768850 114769850 MMseg843 M 115105200 115106800 MMseg844 M 115134650 115136150 MMseg845 M 115656900 115658850 MMseg846 M 115665950 115667250 MMseg847 M 115678600 115679900 MMseg848 M 115893950 115895000 MMseg849 M 115947800 115949300 MMseg850 M 116100300 116101700 MMseg851 M 116508800 116510200 MMseg854 M 117079050 117080600 MMseg855 M 117316100 117317600 MMseg857 M 117351800 117353500 MMseg859 M 117683700 117685300 MMseg862 M 117971700 117973450 MMseg868 M 118276100 118277550 MMseg869 M 118521900 118523700 MMseg870 M 118594300 118595550 MMseg871 M 119374450 119375950 MMseg873 M 119904150 119905300 MMseg876 M 119953200 119954950 MMseg877 M 122902500 122904050 MMseg878 M 123006500 123007800 MMseg879 M 123323350 123324600 MMseg880 M 123707800 123708800 MMseg881 M 123856850 123858100 MMseg883 M 123864900 123865950 MMseg884 M 124369850 124370950 MMseg886 M 124444500 124445950 MMseg887 M 124465050 124466050 MMseg888 M 124515700 124517350 MMseg889 M 124663250 124665000 MMseg890 M 125022300 125023900 MMseg891 M 125153700 125154800 MMseg893 M 125618400 125619700 MMseg894 M 125677650 125678850 MMseg895 M 126265250 126266850 MMseg899 M 127107200 127108200 MMseg903 M 127440900 127442250 MMseg904 M 127530150 127531850 MMseg905 M 127593150 127594250 MMseg906 M 127653450 127655150 MMseg907 M 127913200 127914200 MMseg909 M 128956900 128958250 MMseg921 M 129162200 129163650 MMseg922 M 129461050 129464000 MMseg924 M 130582100 130583200 MMseg934 M 130768750 130770100 MMseg936 M 130837350 130838550 MMseg937 M 130898050 130899150 MMseg938 M 131086950 131088550 MMseg940 M 131104100 131105650 MMseg941 M 131495200 131496350 MMseg942 M 131730800 131732550 MMseg943 M 132207900 132209100 MMseg945 M 132232300 132233850 MMseg946 M 132236600 132237650 MMseg947 M 132364300 132365300 MMseg949 M 132465900 132467200 MMseg951 M 132648000 132649350 MMseg954 M 132666000 132667650 MMseg955 M 132838750 132840350 MMseg958 M 132856800 132858450 MMseg959 M 132984650 132985800 MMseg960 M 133065750 133067150 MMseg961 M 133118500 133119950 MMseg962 M 133123300 133124600 MMseg963 M 133127600 133129200 MMseg964 M 133204150 133205750 MMseg966 M 133538050 133539800 MMseg973 M 133632600 133634450 MMseg974 M 133637850 133641150 MMseg975 M 133872000 133873250 MMseg977 M 134292600 134294150 MMseg981 M 134410300 134411850 MMseg983 M 134535700 134537300 MMseg984 M 134681700 134683150 MMseg985 M 134729700 134731250 MMseg986 M 134961050 134962400 MMseg988 M 135124500 135126000 MMseg990 M 135596500 135598150 MMseg993 M 135879850 135881100 MMseg994 M 135973700 135975000 MMseg995 M 136447100 136448500 MMseg997 M 136545600 136547200 MMseg999 M 136594600 136598150 MMseg1001 M 136797750 136799150 MMseg1008 M 137015750 137017450 MMseg1012 M 137350250 137351400 MMseg1017 M 137916950 137918200 MMseg1026 M 138381100 138383600 MMseg1029 M 138645950 138647500 MMseg1032 M 140647750 140648950 MMseg1049 M 141684600 141686000 MMseg1053 M 142240800 142241850 MMseg1055 M 143084800 143086400 MMseg1057 M 143679800 143681250 MMseg1061 M 144057050 144058600 MMseg1065 M 146277150 146278500 MMseg1066 M 147153000 147154300 MMseg1068 M 147373100 147374650 MMseg1069 M 147596450 147597650 MMseg1071 M 147599300 147600850 MMseg1072 M 147638800 147640450 MMseg1073 M 148724200 148725650 MMseg1081 M 148899600 148901450 MMseg1082 M 148905550 148907100 MMseg1083 M 149019850 149021250 MMseg1084 M 149186650 149187900 MMseg1087 M 149360600 149361750 MMseg1088 M 149857900 149859350 MMseg1090 M 149866150 149868050 MMseg1091 M 149942350 149943700 MMseg1092 M 149953200 149954600 MMseg1093 M 149995100 149996350 MMseg1094 M 150023050 150024400 MMseg1095 M 150691950 150693700 MMseg1096 M 150907200 150908300 MMseg1097 M 150982700 150983700 MMseg1098 M 151001400 151002900 MMseg1099 M 151091950 151093300 MMseg1100 M 151230750 151232000 MMseg1101 M 153281400 153283100 MMseg1111 M 154760350 154761550 MMseg1119 M 155235150 155236150 MMseg1122 M 155673900 155675850 MMseg1124 M 155887750 155889200 MMseg1126 M 157441650 157443000 MMseg1140 M 157565700 157567200 MMseg1141 M 158701750 158703100 MMseg1149 M 158898550 158899800 MMseg1152 M 159015800 159017200 MMseg1155 M 159352300 159354000 MMseg1160 M 160138050 160139900 MMseg1164 M 160154050 160155450 MMseg1165 M 160197700 160200400 MMseg1166 M 160720100 160721150 MMseg1168 M 161454650 161456650 MMseg1175 M 161716050 161717500 MMseg1177 M 163323300 163324550 MMseg1183 M 164180300 164181350 MMseg1191 M 164412050 164413400 MMseg1194 M 164572500 164573850 MMseg1196 M 165395050 165396550 MMseg1206 M 165513000 165514700 MMseg1208 M 165596800 165598350 MMseg1209

Table V presents a full list of strong EZH2 sites on mouse Chr13. For Table V: 0, day 0 ES cells; 7, day 7 ES cells; M, MEF cells.

TABLE V start end name 0 3356950 3360750 13.0seg_1 0 10357650 10360200 13.0seg_2 0 22094300 22095300 13.0seg_3 0 23377600 23379350 13.0seg_4 0 23401050 23406550 13.0seg_5 0 23486500 23488700 13.0seg_6 0 28976050 28977450 13.0seg_7 0 29042750 29044450 13.0seg_8 0 30840550 30843850 13.0seg_9 0 31648650 31652000 13.0seg_10 0 31706400 31723100 13.0seg_11 0 31891450 31904050 13.0seg_12 0 34742650 34745050 13.0seg_13 0 36815800 36828450 13.0seg_14 0 38437500 38439550 13.0seg_15 0 40796400 40801550 13.0seg_16 0 40822500 40838550 13.0seg_17 0 42396950 42398050 13.0seg_18 0 46061450 46063350 13.0seg_19 0 48357100 48358700 13.0seg_20 0 48752600 48765950 13.0seg_21 0 49342350 49343550 13.0seg_22 0 51661800 51665000 13.0seg_23 0 53073250 53076100 13.0seg_24 0 53557950 53562600 13.0seg_25 0 53566450 53572600 13.0seg_26 0 55049500 55050600 13.0seg_27 0 55924950 55939300 13.0seg_28 0 56323550 56325750 13.0seg_29 0 56348800 56356000 13.0seg_30 0 56357250 56361850 13.0seg_31 0 56538800 56540550 13.0seg_32 0 56853050 56856150 13.0seg_33 0 58008150 58010000 13.0seg_34 0 58908000 58911250 13.0seg_35 0 63672500 63675550 13.0seg_36 0 72093850 72101050 13.0seg_37 0 72760300 72763850 13.0seg_38 0 72764950 72769750 13.0seg_39 0 72774250 72777300 13.0seg_40 0 72953350 72954800 13.0seg_41 0 73396950 73403550 13.0seg_42 0 73404600 73405900 13.0seg_43 0 73407750 73410550 13.0seg_44 0 76091600 76093150 13.0seg_45 0 76192300 76195450 13.0seg_46 0 78320050 78322600 13.0seg_47 0 78332100 78342350 13.0seg_48 0 78347000 78350900 13.0seg_49 0 83854500 83857050 13.0seg_50 0 83858550 83860900 13.0seg_51 0 83863250 83867100 13.0seg_52 0 83871450 83873550 13.0seg_53 0 84484400 84486350 13.0seg_54 0 92900200 92902200 13.0seg_55 0 95472100 95473350 13.0seg_56 0 95479900 95481300 13.0seg_57 0 95638750 95648950 13.0seg_58 0 95650900 95656850 13.0seg_59 0 96899200 96900650 13.0seg_60 0 97128850 97130750 13.0seg_61 0 99122600 99130250 13.0seg_62 0 99133200 99137850 13.0seg_63 0 99159800 99162950 13.0seg_64 0 99199350 99200550 13.0seg_65 0 99272300 99274000 13.0seg_66 0 99342550 99343800 13.0seg_67 0 100668150 100669250 13.0seg_68 0 104123000 104126400 13.0seg_69 0 105842800 105845100 13.0seg_70 0 106233400 106237300 13.0seg_71 0 108681100 108682950 13.0seg_72 0 113777300 113785050 13.0seg_73 0 113824250 113826600 13.0seg_74 0 115244750 115251450 13.0seg_75 0 117092800 117097000 13.0seg_76 0 117099700 117101800 13.0seg_77 0 117103150 117104300 13.0seg_78 0 117814500 117815600 13.0seg_79 7 3356750 3361400 13.7seg_1 7 10357800 10361400 13.7seg_2 7 22072350 22075250 13.7seg_3 7 22097900 22100100 13.7seg_4 7 23403900 23406150 13.7seg_5 7 23486450 23489050 13.7seg_6 7 29043000 29045350 13.7seg_7 7 31648100 31652850 13.7seg_8 7 31706200 31724650 13.7seg_9 7 31892150 31905800 13.7seg_10 7 34743050 34745800 13.7seg_11 7 35055450 35057000 13.7seg_12 7 36059900 36062550 13.7seg_13 7 36814750 36828100 13.7seg_14 7 38436250 38439650 13.7seg_15 7 40796150 40810900 13.7seg_16 7 40822500 40841050 13.7seg_17 7 43397550 43399350 13.7seg_18 7 43879700 43881750 13.7seg_19 7 46060500 46062150 13.7seg_20 7 47217850 47219300 13.7seg_21 7 48751050 48769050 13.7seg_22 7 48826200 48827900 13.7seg_23 7 51660950 51665250 13.7seg_24 7 51942100 51945450 13.7seg_25 7 53557200 53562950 13.7seg_26 7 53566150 53570950 13.7seg_27 7 55051250 55052550 13.7seg_28 7 55057900 55059100 13.7seg_29 7 55490850 55492350 13.7seg_30 7 55573800 55575000 13.7seg_31 7 55924850 55940600 13.7seg_32 7 56322300 56325350 13.7seg_33 7 56349750 56364000 13.7seg_34 7 56395300 56398650 13.7seg_35 7 56538900 56540800 13.7seg_36 7 56853300 56856050 13.7seg_37 7 58008450 58009950 13.7seg_38 7 58097150 58098300 13.7seg_39 7 58213150 58215150 13.7seg_40 7 58907500 58910800 13.7seg_41 7 63671950 63675950 13.7seg_42 7 69875950 69879900 13.7seg_43 7 72093300 72102850 13.7seg_44 7 72760100 72763650 13.7seg_45 7 72764700 72770500 13.7seg_46 7 72773400 72779100 13.7seg_47 7 73396600 73410250 13.7seg_48 7 76192300 76194350 13.7seg_49 7 78302350 78303850 13.7seg_50 7 78311400 78313900 13.7seg_51 7 78315300 78326450 13.7seg_52 7 78328450 78329550 13.7seg_53 7 78331750 78345750 13.7seg_54 7 78347000 78351100 13.7seg_55 7 83853900 83862350 13.7seg_56 7 83863900 83869700 13.7seg_57 7 83871600 83873650 13.7seg_58 7 83878050 83879550 13.7seg_59 7 93196150 93198050 13.7seg_60 7 95479200 95481200 13.7seg_61 7 95639150 95656550 13.7seg_62 7 96213300 96214500 13.7seg_63 7 96900700 96904350 13.7seg_64 7 97693800 97696300 13.7seg_65 7 99122200 99139350 13.7seg_66 7 99160300 99162850 13.7seg_67 7 99271550 99276800 13.7seg_68 7 99342150 99344200 13.7seg_69 7 105842950 105845900 13.7seg_70 7 106234300 106236950 13.7seg_71 7 109004400 109006200 13.7seg_72 7 113775950 113785400 13.7seg_73 7 113787700 113790300 13.7seg_74 7 113823900 113826450 13.7seg_75 7 115246450 115250800 13.7seg_76 7 115890950 115892650 13.7seg_77 7 117082950 117105350 13.7seg_78 7 117495700 117497650 13.7seg_79 7 117813300 117816000 13.7seg_80 7 119502750 119504650 13.7seg_81 M 3357350 3360800 13.Mseg_1 M 12197650 12199550 13.Mseg_2 M 12611450 12612950 13.Mseg_3 M 13875800 13877800 13.Mseg_4 M 19039700 19041400 13.Mseg_5 M 20181300 20183850 13.Mseg_6 M 21334350 21335400 13.Mseg_7 M 22086850 22089450 13.Mseg_8 M 22097600 22099800 13.Mseg_9 M 23400950 23406350 13.Mseg_10 M 23487000 23488600 13.Mseg_11 M 25146700 25149200 13.Mseg_12 M 30840050 30843450 13.Mseg_13 M 31649550 31652750 13.Mseg_14 M 31706200 31707550 13.Mseg_15 M 36060050 36061950 13.Mseg_16 M 38242350 38245450 13.Mseg_17 M 38436150 38439900 13.Mseg_18 M 40798050 40801350 13.Mseg_19 M 40803050 40806600 13.Mseg_20 M 40822600 40837900 13.Mseg_21 M 41209050 41210750 13.Mseg_22 M 43879750 43881300 13.Mseg_23 M 46512500 46515600 13.Mseg_24 M 48752700 48765900 13.Mseg_25 M 48825700 48828500 13.Mseg_26 M 49240400 49244450 13.Mseg_27 M 51661750 51664150 13.Mseg_28 M 53556650 53563050 13.Mseg_29 M 53566200 53572700 13.Mseg_30 M 54149750 54151600 13.Mseg_31 M 54866250 54868550 13.Mseg_32 M 54972950 54977050 13.Mseg_33 M 55050200 55052100 13.Mseg_34 M 55056400 55058200 13.Mseg_35 M 55479650 55480900 13.Mseg_36 M 55925150 55939650 13.Mseg_37 M 56321550 56326000 13.Mseg_38 M 56350700 56354900 13.Mseg_39 M 56357500 56362450 13.Mseg_40 M 56396300 56399550 13.Mseg_41 M 56538900 56540700 13.Mseg_42 M 56853850 56855800 13.Mseg_43 M 58008900 58010050 13.Mseg_44 M 58907300 58910550 13.Mseg_45 M 60703100 60704500 13.Mseg_46 M 63672900 63675800 13.Mseg_47 M 69876150 69879350 13.Mseg_48 M 72093600 72106600 13.Mseg_49 M 73397450 73403500 13.Mseg_50 M 73405300 73410050 13.Mseg_51 M 74776800 74777900 13.Mseg_52 M 76520800 76522700 13.Mseg_53 M 81771200 81773200 13.Mseg_54 M 83855650 83856850 13.Mseg_55 M 83859850 83861800 13.Mseg_56 M 83863850 83873800 13.Mseg_57 M 93195000 93197800 13.Mseg_58 M 93563650 93565150 13.Mseg_59 M 94443900 94445100 13.Mseg_60 M 95364800 95367500 13.Mseg_61 M 95454700 95456050 13.Mseg_62 M 95470950 95474500 13.Mseg_63 M 95476500 95482400 13.Mseg_64 M 95637750 95648350 13.Mseg_65 M 95651300 95656700 13.Mseg_66 M 96660450 96661950 13.Mseg_67 M 96900900 96904150 13.Mseg_68 M 97840950 97842850 13.Mseg_69 M 101320050 101323950 13.Mseg_70 M 104123300 104125050 13.Mseg_71 M 105843150 105845800 13.Mseg_72 M 106083650 106085350 13.Mseg_73 M 112141900 112143250 13.Mseg_74 M 113777450 113780200 13.Mseg_75 M 113782950 113785550 13.Mseg_76 M 113821150 113823500 13.Mseg_77 M 113824600 113826100 13.Mseg_78 M 117088200 117089450 13.Mseg_79 M 117093000 117094750 13.Mseg_80 M 117098050 117102350 13.Mseg_81 M 117493650 117500700 13.Mseg_82 M 118391300 118392850 13.Mseg_83

Example 8 Identification of lncRNAs Modifying X-linked Disease Genes

For the mouse inactive X-chromosome, strong and moderate PRC2 sites were identified by the allele-specific ChIP-seq analysis of days 0 and 7 mouse female ES cells, and MEFs (mouse embryonic fibroblasts) as described above. The transcriptome of day 7 differentiating female ES cells was also obtained by RNA-seq analysis. Transcripts in the RNA-seq library were aligned to the mouse July 2007 (NCBI37/mm9) genome using TopHat (Trapnell et al., Bioinformatics, 2009 May 1; 25(9):1105-11) to identify splice junctions, Additionally, Cufflinks (Trapnell et al., Nature Biotechnology 28, 511-515(2010)) was used to assemble full transcripts and quantitate their abundance. To call an lncRNA, transcripts were flagged that overlapped more than 80% with a protein-coding mRNA, The remaining transcripts were called “X-linked lncRNA”, Previously annotated lncRNAs are given a specific ENSEMBL ID in Tables VI and VIII (e.g., ENSMUST00000083484). Novel predicted lncRNAs are given CUFF names (e.g., CUFF.14406) in Tables VI and VIII On the X chromosome, there are 54 disease genes known to date, To reactivate a specific gene for therapeutic purposes, it was reasoned that one could target a nearby strong or moderate site, or both. Relevant strong sites may reside several megabases away. Because there is one strong site for every 10 coding genes on average and there are 20-30 moderate sites on average in this interval, PRC2-associated lncRNAs were identified within strong and moderate sites in a +/−100 kb window from the TSS of the disease gene of interest. The following was done: first all EZH2 sites within +/−100 kb of the transcription start site (TSS) of a disease gene were identified. EZH2 segments that intersect the +/−100-kb window by ≧1 bp were included. This list of EZH2 segments was then intersected with the list of assembled “X-linked lncRNA” (identified by RNA-seq and TopHat/Cufflinks assembly, per above) to obtain Table VI. A total of 47 such lncRNAs were identified (See Table VI). There are 125 entries for these 47 distinct lncRNAs due to the fact that a single lncRNA can overlap multiple EZH2 sites.

TABLE VI LncRNAs associated with strong and moderate EZH2 sites Table VI presents a total of 47 distinct lncRNAs with XCI-associated PRC2 sites located within +/−100 kb of a disease gene of interest. The “start” and “stop” columns show the Start and stop base numbers (coordinates) on the mm9 ChrX; STR, strand (+/−) information; “SIN” refers to the SEQ ID NO:. The predicted transcript is named under “Transcript ID” using ENSEMBL nomenclature when the transcript is a previously annotated RNA. In the case of novel lncRNAs, the transcript is identified as “CUFF.X” where X is a newly assigned numerical. “Ezh2 ID” refers to the PRC2 segment shown in Table IVA or B (a strong or moderate site, as designated in column I as “Ezh2 type”). The “start” and “stop” coordinates of the Ezh2 site are also indicated (Ezh2 start and Ezh2 stop). Human LiftOver chromosome and start and stop coordinates for the predicted corresponding human lncRNAs are shown in the columns “h Chr”, “hg19 start” and “hg19 stop” with strand information (+/−); numbers correspond to human genome build 19. Predicted human EZH2 sites are shown in columns “ezh2 hg19 start” and ezh2 hg19 stop”. The nearest disease gene of interest corresponding to these PRC2-associated lncRNAs is shown in the last column (“disease gene”). Ezh2 hg19- Disease Start Stop Str SIN: Transcript_ID Ezh2_ID Ezh2_start Ezh2_stop type h Chr hg19_Start hg19_Stop str SIN: ezh2_hg19_start ezh2_hg19_stop gene 6948402 6952952 − 1 ENSMUST00000134976 seg_67 6952250 6954400 M chrX 49644159 49648485 + 157 49642649 49644648 CLCN5 6953051 6955168 + 2 ENSMUST00000128858 seg_67 6952250 6954400 M chrX 49641851 49644052 − 158 49642649 49644648 CLCN5 7418487 7449418 + 3 CUFF.13987.1 seg_100 7418000 7419950 M chrX 48783029 48815641 − 174 48814127 48816443 PQBP1 7418957 7449384 + 4 CUFF.13988.3 seg_100 7418000 7419950 M chrX 48778055 48815149 − 175 48814127 48816443 PQBP1 7418957 7453752 + 5 CUFF.13988.4 seg_100 7418000 7419950 M chrX 48778055 48815149 − 222 48814127 48816443 PQBP1 7419731 7452410 + 6 ENSMUST00000150644 seg_100 7418000 7419950 M chrX 48779489 48814344 − 189 48814127 48816443 PQBP1 7419731 7452410 + 7 ENSMUST00000150644 seg_102 7451100 7452750 M chrX 48779489 48814344 − 190 48779300 48780883 PQBP1 7476440 7483890 + 8 CUFF.13992.1 seg_105 7475700 7477250 M chrX 48750837 48754815 − 176 48754430 48755836 PQBP1 7476463 7497358 + 9 CUFF.13985.1 seg_105 7475700 7477250 M chrX 48693572 48755112 − 177 48754430 48755836 PQBP1 7476463 7497358 + 10 CUFF.13985.1 seg_106 7497150 7506950 M chrX 48693572 48755112 − 178 48683657 48693841 PQBP1 7476501 7476531 − 11 CUFF.13986.1 seg_105 7475700 7477250 M chrX 48755060 48755074 + 179 48754430 48755836 PQBP1 7476797 7483890 + 12 CUFF.13992.3 seg_105 7475700 7477250 M chrX 48750837 48754815 − 183 48754430 48755836 PQBP1 7527282 7527994 − 13 ENSMUST00000117520 seg_108 7526550 7528550 M other 0 0 + 0 0 OA1 = GPR143 7624355 7624525 + 14 ENSMUST00000119726 seg_114 7623400 7624800 M other 0 0 + 0 0 OA1 = GPR143 7624355 7624525 + 15 ENSMUST00000119726 seg_114 7623400 7624800 M other 0 0 + 0 0 OA1 = GPR143 7682420 7683239 + 16 ENSMUST00000118546 seg_117 7681350 7682450 M other 0 0 + 0 0 OA1 = GPR143 7682420 7683239 + 17 ENSMUST00000118546 seg_117 7681350 7682450 M other 0 0 + 0 0 OA1 = GPR143 7706844 7709637 − 18 ENSMUST00000149257 seg_120 7708050 7709850 M chrX 48456197 48458240 + 223 48455984 48457509 WAS 7708468 7709984 − 19 CUFF.13998.10 seg_120 7708050 7709850 M chrX 48455856 48457390 + 200 48455984 48457509 WAS 7731609 7753084 − 20 ENSMUST00000133093 seg_123 7752200 7753550 M chrX 48398062 48419602 + 224 48397692 48398968 WAS 7731609 7753084 − 21 ENSMUS100000133093 seg_123 7752200 7753550 M chrX 48393062 48419602 + 225 48397692 48398968 WAS 7731617 7753017 − 22 ENSMUST00000143984 seg_123 7752200 7753550 M chrX 48398130 48419594 + 226 48397692 48398968 WAS 8903530 8904209 − 23 CUFF.14023.1 seg_142 8902450 8904350 M other 0 0 + 0 0 OA1 = GPR143 8904262 8904575 − 24 CUFF.14022.1 seg_142 8902450 8904350 M other 0 0 + 0 0 OA1 = GPR143 20194399 20225033 + 25 CUFF.14074.1 seg_17 20194000 20195500 S chrX 47004091 47041189 + 137 47003630 47005197 UBA1 20194399 20225033 + 26 CUFF.14074.1 seg_391 20193650 20196400 M chrX 47004091 47041189 + 138 47003141 47006163 UBA1 20194629 20228027 + 27 CUFF.14095.1 seg_17 20194000 20195500 S chrX 47004307 47046225 + 196 47003630 47005197 UBA1 20194629 20228027 + 28 CUFF.14095.1 seg_391 20193650 20196400 M chrX 47004307 47046225 + 197 47003141 47006163 UBA1 20194911 20226322 + 29 ENSMUST00000141128 seg_17 20194000 20195500 S chrX 47004623 47044506 + 207 47003630 47005197 UBA1 20194911 20226322 + 30 ENSMUST00000141128 seg_391 20193650 20196400 M chrX 47004623 47044506 + 208 47003141 47006163 UBA1 20194911 20226322 + 31 ENSMUST00000141128 seg_17 20194000 20195500 M chrX 47004623 47044506 + 209 47003630 47005197 UBA1 20194911 20226322 + 32 ENSMUST00000141128 seg_391 20193650 20196400 M chrX 47004623 47044506 + 210 47003141 47006163 UBA1 20281032 20294944 + 33 CUFF.14075.2 seg_394 20294250 20296200 M chrX 47092379 47103954 + 139 47103171 47106480 UBA1 45162547 45245729 − 34 CUFF.14233.3 seg_768 45243800 45248200 M chrX 128580480 128657501 − 198 128655532 128659505 OCRL 45227508 45245609 − 35 ENSMUST00000141084 seg_768 45243800 45248200 M chrX 128638885 128657382 − 211 128655532 128659505 OCRL 45363158 45363341 + 36 CUFF.14229.1 seg_774 45362150 45363400 M other 0 0 + 0 0 OA1 = GPR143 45363178 45363342 + 37 CUFF.14188.1 seg_774 45362150 45363400 M other 0 0 + 0 0 OA1 = GPR143 48368108 48371354 − 38 CUFF.14256.2 seg_899 48367900 48369550 M chrX 131348118 131351566 − 184 131347929 131349656 NYS1 = FRMD7 48371324 48371616 − 39 CUFF.14209.1 seg_900 48371400 48373300 M chrX 131351532 131351823 − 140 131351609 131353535 NYS1 = FRMD7 48371476 48371850 + 40 CUFF.14210.1 seg_900 48371400 48373300 M chrX 131351714 131352061 + 141 131351609 131353535 NYS1 = FRMD7 50341229 50374836 + 41 CUFF.14271.1 seg_1003 50340900 50342400 M chrX 133594153 133634696 + 142 133593796 133595251 HPRT1 = HPRT 50341250 50341769 + 42 CUFF.14224.1 seg_1003 50340900 50342400 M chrX 133594174 133594686 + 143 133593796 133595251 HPRT1 = HPRT 50407432 50407526 − 43 ENSMUST00000083484 seg_1004 50407500 50413850 M chrX 133680658 133680753 − 144 133680727 133686885 HPRT1 = HPRT 50408223 50410367 − 44 ENSMUST00000155622 seg_1004 50407500 50413850 M chrX 133681640 133683674 − 145 133680727 133686885 HPRT1 = HPRT 50408223 50410367 − 45 ENSMUST00000155622 seg_37 50410150 50413500 S chrX 133681640 133683674 − 146 133683549 133686542 HPRT1 = HPRT 50408947 50410413 − 46 CUFF.14272.4 seg_1004 50407500 50413850 M chrX 133682420 133683720 − 147 133680727 133686885 HPRT1 = HPRT 50408947 50410413 − 47 CUFF.14272.4 seg_37 50410150 50413500 S chrX 133682420 133683720 − 148 133683549 133686542 HPRT1 = HPRT 50409370 50410367 − 48 ENSMUST00000151099 seg_1004 50407500 50413850 M chrX 133682808 133683674 − 149 133680727 133686885 HPRT1 = HPRT 50409370 50410367 − 49 ENSMUST00000151099 seg_37 50410150 50413500 S chrX 133682808 133683674 − 150 133683549 133686542 HPRT1 = HPRT 50409370 50410367 − 50 ENSMUST00000151099 seg_1004 50407500 50413850 M chrX 133682808 133683674 − 151 133680727 133686885 HPRT1 = HPRT 50409370 50410367 − 51 ENSMUST00000151099 seg_37 50410150 50413500 S chrX 133682808 133683674 − 152 133583549 133686547 HPRT1 = HPRT 65920689 65931574 − 52 ENSMUST00000101520 seg_1309 65930300 65933100 M chrX 146974056 146993242 − 153 146992254 146994838 FMR1 65931716 65951510 + 53 CUFF.14287.2 seg_1309 65930300 65933100 M chrX 146993398 147012157 + 154 146992254 146994838 FMR1 65931716 65970681 + 54 CUFF.14287.3 seg_1309 65930300 65933100 M chrX 146993398 147032195 + 155 146992254 146994838 FMR1 65931716 65970681 + 55 CUFF.14352.1 seg_1309 65930300 65933100 M chrX 146993398 147032195 + 156 146992254 146994838 FMR1 65932068 65932563 + 56 CUFF.14288.1 seg_1309 65930300 65933100 M chrX 146993774 146994298 + 212 146992254 146994838 FMR1 65932227 65932774 + 57 CUFF.14353.1 seg_1309 65930300 65933100 M chrX 146993961 146994506 + 213 146992254 146994838 FMR1 70884707 70887453 + 58 CUFF.14399.1 seg_1504 70880250 70886600 M chrX 152912601 152915465 + 159 152907256 152914605 ABCD1 70884707 70887453 + 59 CUFF.14399.1 seg_56 70884700 70886100 S chrX 152912601 152915465 + 160 152912593 152913737 ABCD1 70918489 70919425 + 60 CUFF.14406.3 seg_1507 70919050 70921750 M chrX 152953368 152954327 + 161 152953952 152956569 ABCD1 71038698 71070106 − 61 CUFF.14350.4 seg_1515 71069800 71072250 M chrX 153067624 153096149 − 162 153095872 153098097 L1CAM 71167461 71171740 − 62 ENSMUST00000135213 seg_1524 71165700 71168200 M chrX 153200721 153205716 − 214 153198707 153201262 AVPR2 71188131 71212039 − 63 CUFF.14346.3 seg_1526 71210350 71212250 M chrX 153213005 153236998 − 188 153235226 153237200 AVPR2 71209543 71210383 − 64 CUFF.14432.1 seg_1526 71210350 71212250 M chrX 153234378 153235269 − 215 153235226 153237200 AVPR2 71212129 71212322 − 65 CUFF.14347.1 seg_1526 71210350 71212250 M chrX 153237078 153237272 − 163 153235226 153237200 AVPR2 71252041 71252841 + 66 ENSMUST00000120692 seg_1528 71251100 71253700 M other 0 0 + 0 0 OA1 = GPR143 71252041 71252841 + 67 ENSMUST00000120692 seg_1528 71251100 71253700 M other 0 0 + 0 0 OA1 = GPR143 71491032 71491211 − 63 CUFF.14417.1 seg_1536 71489000 71492050 M chrX 153598856 153599051 − 216 153596991 153599880 EMD 71491144 71491278 − 69 CUFF.14563.1 seg_1536 71489000 71492050 M chrX 153598983 153599133 − 217 153596991 153599880 EMD 71500026 71500436 + 70 CUFF.14439.2 seg_1537 71499550 71501250 M chrX 153607566 153607980 + 164 153606662 153608766 EMD 71500100 71501024 + 71 ENSMUST00000129516 seg_1537 71499550 71501250 M chrX 153607643 153608527 + 218 153606662 153608766 EMD 71527251 71528204 + 72 ENSMUST00000146260 seg_1538 71525800 71528950 M chrX 153637932 153640001 + 165 153636852 153640773 EMD 71527251 71528254 + 73 ENSMUST00000135012 seg_1538 71525800 71528950 M chrX 153637932 153640082 + 166 153636852 153640773 EMD 71527980 71535490 + 74 CUFF.14421.3 seg_1538 71525800 71528950 M chrX 153639773 153650067 + 167 153636852 153640773 EMD 71528089 71533374 + 75 ENSMUST00000156880 seg_1538 71525800 71528950 M chrX 153639886 153647898 + 219 153636852 153640773 EMD 71528089 71535487 + 76 ENSMUST00000124200 seg_1538 71525800 71528950 M chrX 153639886 153650064 + 220 153636852 153640773 EMD 71528090 71535488 + 77 ENSMUST00000114182 seg_1538 71525800 71528950 M chrX 153639887 153650065 + 221 153636852 153640773 EMD 71550319 71553622 + 78 CUFF.14360.1 seg_1540 71549400 71551350 M chrX 153665202 153668876 + 168 153664294 153666201 EMD 71550319 71557201 + 79 CUFF.14360.2 seg_1540 71549400 71551350 M chrX 153665202 153671813 + 169 153664294 153666201 EMD 71550337 71553623 + 80 CUFF.14449.2 seg_1540 71549400 71551350 M chrX 153665244 153668877 + 170 153664294 153666201 EMD 71574384 71597045 + 81 CUFF.14364.2 seg_1542 71572900 71574500 M chrX 153686599 153705719 + 172 153686144 153686719 IKBKG 71574384 71590028 + 82 CUFF.14364.1 seg_1542 71572900 71574500 M chrX 153686599 153702184 + 171 153686144 153686710 IKBKG 71574404 71588866 + 83 CUFF.14453.2 seg_1542 71572900 71574500 M chrX 153686620 153701013 + 173 153686144 153686719 IKBKG 71598672 71598963 − 84 CUFF.14450.4 seg_1543 71597350 71599550 M chrX 153707075 153707335 − 186 153706026 153707374 IKBKG 71598672 71598963 − 85 CUFF.14450.4 seg_58 71597850 71598950 S chrX 153707075 153707335 − 187 153706412 153707323 IKBKG 71675010 71699193 + 86 CUFF.14372.14 seg_1547 71673000 71675050 M chrX 153775825 153799420 + 199 153773591 153775852 G6PD = G6PDX 72388763 72388969 + 87 ENSMUST00000121894 seg_1564 72385650 72389350 M other 0 0 + 0 0 OA1 = GPR143 72388763 72388969 + 88 ENSMUST00000121894 seg_1564 72385650 72389350 M other 0 0 + 0 0 OA1 = GPR143 72389027 72389809 + 89 ENSMUST00000116535 seg_1564 72385650 72389350 M other 0 0 + 0 0 OA1 = GPR143 72389027 72389809 + 90 ENSMUST00000116535 seg_1564 72385650 72389350 M other 0 0 + 0 0 OA1 = GPR143 101531844 101543844 − 91 CUFF.14676.1 seg_2367 101528100 101532450 M other 0 0 + 0 0 OA1 = GPR143 101531844 101543844 − 92 CUFF.14676.1 seg_2368 101541300 101544300 M other 0 0 + 0 0 OA1 = GPR143 101541168 101543573 − 93 ENSMUST00000120233 seg_2368 101541300 101544300 M other 0 0 + 0 0 OA1 = GPR14

103106842 103124685 − 94 ENSMUST00000126345 seg_2443 103106750 103108550 M chrX 76995795 77041698 − 191 76995713 77031704 ATRX 131120171 131120713 + 95 CUFF.14771.1 seg_2832 131119150 131121200 M chrX 100645947 100646543 + 126 100644952 100646916 BTK 131120229 131122601 + 96 ENSMUST00000170828 seg_2832 131119150 131121200 M chrX 100646005 100650827 + 192 100644952 100646916 BTK 131216059 131216416 + 97 ENSMUST00000117957 seg_2837 131214300 131216200 M other 0 0 + 0 0 OA1 = GPR14

131216059 131216416 + 98 ENSMUST00000117957 seg_2837 131214300 131216200 M other 0 0 + 0 0 OA1 = GPR14

131223346 131231296 + 99 CUFF.14776.2 seg_2838 131220750 131223850 M chrX 100742982 100750790 + 201 100740062 100743543 GLA 136991152 136999981 + 100 ENSMUST00000155235 seg_3081 136989950 136993450 M chrX 106871733 106882715 + 127 106870757 106873713 PRPS1 136991152 136999981 + 101 ENSMUST00000155235 seg_3081 136989950 136993450 M chrX 106871733 106882715 + 128 106870757 106873713 PRPS1 137074067 137077207 − 102 ENSMUST00000112995 seg_3088 137074650 137078000 M chrX 106956451 106959745 − 129 106956989 106960573 PRPS1 137077642 137083068 − 103 ENSMUST00000152048 seg_3088 137074650 137078000 M chrX 106960212 106965429 − 185 106956989 106960573 PRPS1 138062502 138063011 + 104 ENSMUST00000118845 seg_3158 138061650 138063400 M other 0 0 + 0 0 OA1 = GPR143 147079847 147091979 − 105 CUFF.14799.4 seg_3402 147079250 147080800 M chrX 54947223 54957868 + 182 54957123 54958355 ALAS2 147417684 147442281 − 106 CUFF.14800.3 seg_3419 147442200 147443900 M chrX 54561410 54591707 + 130 54560615 54561460 FGD1 147481431 147502847 + 107 CUFF.14802.3 seg_3422 147478700 147483450 M chrX 54475005 54522668 − 202 54520506 54525870 FGD1 147481431 147521724 + 108 CUFF.14907.2 seg_3422 147478700 147483450 M chrX 54475005 54522668 − 203 54520506 54525870 FGD1 147481431 147521724 + 109 CUFF.14802.2 seg_3422 147478700 147483450 M chrX 54475005 54522668 − 204 54520506 54525870 FGD1 148089731 148090645 + 110 ENSMUST00000121650 seg_3440 148088650 148090350 M other 0 0 + 0 0 OA1 = GPR143 148089731 148090645 + 111 ENSMUST00000121650 seg_3440 148088650 148090350 M other 0 0 + 0 0 OA1 = GPR143 148578768 148639178 + 112 CUFF.14816.1 seg_119 148578700 148580800 S chrX 53283545 53350548 − 131 53348417 53350616 MRX1 = | QSEC2 148578768 148639178 + 113 CUFF.14816.1 seg_3460 148578400 148581050 M chrX 53283545 53350548 − 132 53348024 53350934 MRX1 = | QSEC2 149044052 149204222 − 114 CUFF.14826.2 seg_3484 149203250 149205000 M chrX 9754409 9917528 + 193 9753597 9755295 OA1 = GPR143 149057511 149204219 − 115 CUFF.14936.7 seg_3484 149203250 149205000 M chrX 9754412 9901148 + 194 9753597 9755295 OA1 = GPR143 151696962 151731456 + 116 CUFF.14845.1 seg_3550 151696250 151698050 M chrX 23722764 23761432 − 133 23760757 23761726 SAT = SAT1 151696978 151697427 + 117 CUFF.14962.1 seg_3550 151696250 151698050 M chrX 23761017 23761415 − 134 23760757 23761726 SAT = SAT1 151696986 151698125 + 118 ENSMUST00000134662 seg_3550 151696250 151698050 M chrX 23760757 23761407 − 135 23760757 23761726 SAT = SAT1 151738742 151740292 − 119 ENSMUST00000144423 seg_3551 151740100 151741400 M other 0 0 + 0 0 OA1 = GPR143 153915277 153915525 − 120 CUFF.14971.1 seg_3603 153914450 153916200 M chrX 21971056 21975269 + 205 21974127 21976977 PHEX 157027663 157036207 + 121 CUFF.15003.1 seg_3707 157034600 157036250 M chrX 18907129 18912800 − 181 18906778 18908445 PHKA2 157241673 157241983 − 122 CUFF.15005.1 seg_3718 157241500 157242700 M chrX 18651084 18651384 + 206 18650361 18651566 RS1 157246270 157432634 − 123 CUFF.15001.3 seg_3729 157431550 157434400 M chrX 18443703 18646844 + 180 18441881 18444750 CDKL5 162827965 162878637 − 124 CUFF.15054.2 seg_3948 162877500 162879500 M chrX 13752890 13788174 + 195 13750751 13753578 OFD1 162948132 162948265 + 125 CUFF.14908.1 seg_3951 162946950 162949350 M chrX 13671391 13671542 − 136 13670689 13672284 SEDL = TRAPPC2

indicates data missing or illegible when filed

If the stringency were relaxed beyond +/−100 kb, a total of 230 distinct lncRNAs with XCI-associated PRC2 sites was observed; these are set forth in Table VII. There are 640 entries for these 230 distinct lncRNAs in Table VII, also due to the fact that a single lncRNA can overlap multiple EZH2 sites. A strong or moderate site located >100 kb away from a gene of interest may be involved in repressing the gene at long range. The present data suggests that a single strong EZH2 site (for example) could control genes over a 1-2 Mb domain,

TABLE VII Table VII presents 230 distinct lncRNAs with XCI-associated PRC2 sites (640 entries). This table is laid out in a similar manner to Table VI and lists all of the lncRNAs associated with strong and moderate sites on the X chromosome, irrespective of proximity to disease gene of interest. A strong or moderate site located >100 kb away from a gene of interest may be involved in repressing the gene a long range. Ezh2 hg19- Start Stop Str Transcript_ID Ezh2_ID Ezh2_start Ezh2_stop type h_Chr hg19_Start hg19_Stop strand ezh2_hg19_start ezh2_hg19_stop disease_gene 5976972 6214566 + CUFF.13967.2 seg_25 5976300 5978850 M chrX 50336327 50557310 − 124335918 124340213 CLCN5 5977553 5977692 + CUFF.13962.1 seg_25 5976300 5978850 M chrX 50556592 505556724 − 124335918 124340213 CLCN5 6356106 6474704 + CUFF.13966.1 seg_1 6355950 6357900 S chrX 50143999 50213570 − 50211825 50213570 CLCN5 6356106 6474704 + CUFF.13966.1 seg_33 6353350 6359000 M chrX 50143999 50213570 − 50210632 50215941 CLCN5 6948402 6952952 − ENSMUST00000134976 seg_67 6952250 6954400 M chrX 49644159 49648485 + 49642649 49644648 CLCN5 6953051 6955168 + ENSMUST00000128858 seg_67 6952250 6954400 M chrX 49641851 49644052 − 49642649 49644648 CLCN5 7134422 7154618 − CUFF.13970.2 seg_82 7132850 7137250 M chrX 49123140 49146158 + 49143046 49147196 PQBP1 7215764 7224495 + ENSMUST00000149795 seg_86 7224100 7226000 M chrX 49049104 49056698 − 73832957 73834636 PQBP1 7329256 7329540 + ENSMUST00000121084 seg_92 7328650 7330300 M chrX 114953264 114953549 − 0 0 COL4A5 7329256 7329540 + ENSMUST00000121084 seg_92 7328650 7330300 M chrX 114953264 114953549 − 0 0 COL4A5 7367144 7397082 + ENSMUST00000132456 seg_95 7365650 7367450 M chrX 48830738 48858649 − 95939522 95940514 PQBP1 7367144 7397082 + ENSMUST00000132456 seg_95 7365650 7367450 M chrX 48830738 48858649 − 95939522 95940514 PQBP1 7418487 7449418 + CUFF.13987.1 seg_100 7418000 7419950 M chrX 48783029 48815641 − 48814127 48816443 PQBP1 7418957 7449384 + CUFF.13988.3 seg_100 7418000 7419950 M chrX 48778055 48815149 − 48814127 48816443 PQBP1 7418957 7453752 + CUFF.13988.4 seg_100 7418000 7419950 M chrX 48778055 48815149 − 48814127 48816443 PQBP1 7419731 7452410 + ENSMUST00000150644 seg_100 7418000 7419950 M chrX 48779489 48814344 − 48814127 48816443 PQBP1 7419731 7452410 + ENSMUST00000150644 seg_102 7451100 7452750 M chrX 48779489 48814344 − 48779300 48780883 PQBP1 7476440 7483890 + CUFF.13992.1 seg_105 7475700 7477250 M chrX 48750837 48754815 − 48754430 48755836 PQBP1 7476463 7497358 + CUFF.13985.1 seg_105 7475700 7477250 M chrX 48693572 48755112 − 48754430 48755836 PQBP1 7476463 7497358 + CUFF.13985.1 seg_106 7497150 7506950 M chrX 48693572 48755112 − 48683657 48693841 PQBP1 7476501 7476531 − CUFF.13986.1 seg_105 7475700 7477250 M chrX 48755060 48755074 + 48754430 48755836 PQBP1 7476797 7483890 + CUFF.13992.3 seg_105 7475700 7477250 M chrX 48750837 48754815 − 48754430 48755836 PQBP1 7527282 7527994 − ENSMUST00000117520 seg_108 7526550 7528550 M other 0 0 + 106690970 106694548 OA1 = GPR143 7624355 7624525 + ENSMUST00000119726 seg_114 7623400 7624800 M other 0 0 + 0 0 OA1 = GPR143 7624355 7624525 + ENSMUST00000119726 seg_114 7623400 7624800 M other 0 0 + 0 0 OA1 = GPR143 7682420 7683239 + ENSMUST00000118546 seg_117 7681350 7682450 M other 0 0 + 111324058 111328035 OA1 = GPR143 7682420 7683239 + ENSMUST00000118546 seg_117 7681350 7682450 M other 0 0 + 111324058 111328035 OA1 = GPR143 7706844 7709637 − ENSMUST00000149257 seg_120 7708050 7709850 M chrX 43456197 48458240 + 48455984 48457509 WAS 7708468 7709984 − CUFF.13998.10 seg_120 7708050 7709850 M chrX 48455856 48457390 + 48455984 48457509 WAS 7731609 7753084 − ENSMUST00000133093 seg_123 7752200 7753550 M chrX 48398062 48419602 + 48397692 48398968 WAS 7731609 7753084 − ENSMUST00000133093 seg_123 7752200 7753550 M chrX 48398062 48419602 + 48397692 48398968 WAS 7731617 7753017 − ENSMUST00000143984 seg_123 7752200 7753550 M chrX 48398130 48419594 + 48397692 48398968 WAS 7767001 7770024 − ENSMUST00000149495 seg_124 7769500 7771450 M chrX 48380199 48382586 + 23349576 23354524 WAS 7767001 7770024 − ENSMUST00000149495 seg_124 7769500 7771450 M chrX 48380199 48382586 + 23349576 23354524 WAS 7770971 7783651 − CUFF.14005.1 seg_124 7769500 7771450 M chrX 48367347 48371257 + 23349576 23354524 WAS 7770971 7783651 − CUFF.14005.1 seg_125 7782550 7784550 M chrX 48367347 43371257 + 48365856 48368481 WAS 7770974 7787507 − CUFF.13999.1 seg_124 7769500 7771450 M chrX 48363330 48379198 + 23349576 23354524 WAS 7770974 7787507 − CUFF.13999.1 seg_126 7786050 7787900 M chrX 48363330 48379198 + 48363330 48364503 WAS 7770979 7783623 − ENSMUST00000122943 seg_124 7769500 7771450 M chrX 48367374 48379193 + 23349576 23354524 WAS 7770979 7783623 − ENSMUST00000122943 seg_125 7782550 7784550 M chrX 48367374 48379193 + 48365856 48368481 WAS 7780134 7783651 − CUFF.13999.8 seg_125 7782550 7784550 M chrX 48367347 48371257 + 48365856 48368481 WAS 8776971 8792653 + CUFF.14016.1 seg_139 8775150 8778300 M chrX 37430765 37481482 + 37429656 37431928 XK 8903530 8904209 − CUFF.14023.1 seg_142 8902450 8904350 M other 0 0 + 0 0 OA1 = GPR143 8904262 8904575 − CUFF.14022.1 seg_142 8902450 8904350 M other 0 0 + 0 0 OA1 = GPR143 9233402 9240129 − ENSMUST00000154091 seg_145 9239450 9240700 M chrX 37700168 37706872 − 37706179 37707339 CYBB 10062235 10173613 + CUFF.14024.1 seg_170 10060250 10063600 M chrX 38420746 38548056 + 38418377 38422130 OTC 10062248 10173731 + CUFF.14034.1 seg_170 10060250 10063600 M chrX 38420761 38548175 + 38418377 38422130 OTC 10284302 10295947 − CUFF.14026.1 seg_176 10294100 10296950 M chrX 38652969 38664787 − 38662899 38665833 OTC 10284302 10295947 − CUFF.14026.1 seg_4 10294900 10296300 S chrX 38652969 38664787 − 38663737 38665158 OTC 10292145 10296816 + CUFF.14027.3 seg_176 10294100 10296950 M chrX 38660685 38665692 + 38662899 38665833 OTC 10294443 10294862 + CUFF.14027.4 seg_176 10294100 10296950 M chrX 38663247 38663698 + 38662899 38665833 OTC 11241367 11241392 − CUFF.14028.1 seg_222 11237650 11247250 M chrX 39547664 39547694 − 39544481 39551310 OTC 11421805 11421826 − CUFF.14029.1 seg_230 11421800 11423650 M other 0 0 + 39719105 39720500 OA1 = GPR143 11490217 11490415 − ENSMUST00000121919 seg_233 11490400 11492200 M chrX 39646386 39646595 − 39784049 39785370 OTC 11490217 11490415 − ENSMUST00000121919 seg_233 11490400 11492200 M chrX 39646386 39646595 − 39784049 39785370 OTC 11613866 11737559 − CUFF.14045.5 seg_12 11727350 11738450 5 chrX 39910507 40036404 − 40025540 40037252 CSNB1 = NYX 11613866 11737559 − CUFF.14045.5 seg_245 11726100 11739000 M chrX 39910507 40036404 − 40024407 40037420 CSNB1 = NYX 11613866 11705532 − CUFF.14045.3 seg_11 11699450 11718900 S chrX 39910507 40005885 − 39999869 40018589 CSNB1 = NYX 11613866 11705532 − CUFF.14045.3 seg_243 11698650 11720400 M chrX 39910507 40005885 − 39999141 40019359 CSNB1 = NYX 11623972 11657682 − CUFF.14034.6 seg_10 11650000 11672900 S chrX 39921386 39957214 − 39949539 39972450 CSNB1 = NYX 11623972 11657682 − CUFF.14034.6 seg_239 11642000 11673350 M chrX 39921386 39957214 − 39941129 39972450 CSNB1 = NYX 11625208 11657693 − CUFF.14045.8 seg_10 11650000 11672900 S chrX 39922665 39957225 − 39949539 39972450 CSNB1 = NYX 11625208 11657693 − CUFF.14045.8 seg_239 11642000 11673350 M chrX 39922665 39957225 − 39941129 39972450 CSNB1 = NYX 12254777 12339238 − CUFF.14050.2 seg_13 12338750 12340000 S chrX 40511131 40595078 − 40594596 40595937 CSNB1 = NYX 12254777 12339238 − CUFF.14050.2 seg_270 12338300 12340450 M chrX 40511131 40595078 − 40594157 40596414 CSNB1 = NYX 12256875 12339199 − ENSMUST00000124053 seg_13 12338750 12340000 S chrX 40513127 40595044 − 40594596 40595937 CSNB1 = NYX 12256875 12339199 − ENSMUST00000124053 seg_270 12338300 12340450 M chrX 40513127 40595044 − 40594157 40596414 CSNB1 = NYX 12338584 12339240 − CUFF.14036.7 seg_13 12338750 12340000 S chrX 40594441 40595080 − 40594596 40595937 CSNB1 = NYX 12338584 12339240 − CUFF.14036.7 seg_270 12338300 12340450 M chrX 40594441 40595080 − 40594157 40596414 CSNB1 = NYX 12339404 12398618 + ENSMUST00000139163 seg_13 12338750 12340000 S chrX 40595245 40649934 + 40594596 40595937 CSNB1 = NYX 12339404 12398618 + ENSMUST00000139163 seg_270 12338300 12340450 M chrX 40595245 40649934 + 40594157 40596414 CSNB1 = NYX 12513998 12515254 + ENSMUST00000121924 seg_279 12512850 12514750 M other 0 0 + 0 0 OA1 = GPR143 12513998 12515254 + ENSMUST00000121924 seg_279 12512850 12514750 M other 0 0 + 0 0 OA1 = GPR143 12648548 12650070 + CUFF.14051.1 seg_286 12648150 12650200 M chrX 40944519 40945909 + 40944126 40946037 CSNB1 = NYX 12648599 12768156 + CUFF.14068.1 seg_286 12648150 12650200 M chrX 40944564 41100156 + 40944126 40946037 CSNB1 = NYX 12648599 12743898 + CUFF.14068.3 seg_286 12648150 12650200 M chrX 40944564 41089870 + 40944126 40946037 CSNB1 = NYX 12648599 12738071 + CUFF.14068.2 seg_286 12648150 12650200 M chrX 40944564 41082678 + 40944126 40946037 CSNB1 = NYX 12648884 12649225 + CUFF.14043.1 seg_286 12648150 12650200 M chrX 40944807 40945143 + 40944126 40946037 CSNB1 = NYX 12650018 12650277 + CUFF.14069.1 seg_286 12648150 12650200 M chrX 40945858 40946083 + 40944126 40946037 CSNB1 = NYX 12655982 12656311 + CUFF.14071.1 seg_287 12656000 12657100 M chrX 40950911 40950974 + 40950911 40951267 CSNB1 = NYX 13094206 13423886 − CUFF.14064.1 seg_312 13422100 13425750 M chrX 41374187 41782933 − 41781170 41784742 CSNB1 = NYX 13129411 13423886 − CUFF.14064.11 seg_312 13422100 13425750 M chrX 41416196 41782933 − 41781170 41784742 CSNB1 = NYX 13131747 13423893 − CUFF.14054.11 seg_312 13422100 13425750 M chrX 41418781 41782940 − 41781170 41784742 CSNB1 = NYX 13290060 13290192 − CUFF.14072.1 seg_307 13289250 13291300 M other 0 0 + 41643313 41645899 OA1 = GPR143 16195694 16195958 + CUFF.14062.1 seg_337 16195350 16197100 M chrX 43514157 43514486 + 43513806 43515723 NDP 16196824 16254723 + CUFF.14077.1 seg_337 16195350 16197100 M chrX 43515447 43595516 + 43513806 43515723 NDP 17135024 17148750 − ENSMUST00000127690 seg_355 17147650 17149850 M chrX 44383408 44401509 − 44400354 44402597 NDP 19636666 19674647 + CUFF.14085.1 seg_16 19636100 19638650 S chrX 46433208 46457778 + 46432903 46435184 UBA1 19636666 19674647 + CUFF.14085.1 seg_374 19635850 19639100 M chrX 46433208 46457778 + 46432903 46435740 UBA1 19636666 19638395 + CUFF.14085.2 seg_16 19636100 19638650 S chrX 46433208 46434914 + 46432903 46435184 UBA1 19636666 19638395 + CUFF.14085.2 seg_374 19635850 19639100 M chrX 46433208 46434914 + 46432903 46435740 UBA1 19772151 19868953 − CUFF.14069.5 seg_379 19867400 19869550 M chrX 46538672 46618615 − 46617058 46619162 UBA1 20002814 20003061 + CUFF.14072.2 seg_382 20001050 20006900 M chrX 46772015 46772258 + 46770003 46775398 UBA1 20003237 20003672 + CUFF.14092.1 seg_382 20001050 20006900 M chrX 46772434 46772864 + 46770003 46775398 UBA1 20194399 20225033 + CUFF.14074.1 seg_17 20194000 20195500 S chrX 47004091 47041189 + 47003630 47005197 UBA1 20194399 20225033 + CUFF.14074.1 seg_391 20193650 20196400 M chrX 47004091 47041189 + 47003141 47006163 UBA1 20194629 20228027 + CUFF.14095.1 seg_17 20194000 20195500 S chrX 47004307 47046225 + 47003630 47005197 UBA1 20194629 20228027 + CUFF.14095.1 seg_391 20193650 20196400 M chrX 47004307 47046225 + 47003141 47006163 UBA1 20194911 20226322 + ENSMUST00000141128 seg_17 20194000 20195500 S chrX 47004623 47044506 + 47003630 47005197 UBA1 20194911 20226322 + ENSMUST00000141128 seg_391 20193650 20196400 M chrX 47004623 47044506 + 47003141 47006163 UBA1 20194911 20226322 + ENSMUST00000141128 seg_17 20194000 20195500 S chrX 47004623 47044506 + 47003630 47005197 UBA1 20194911 20226322 + ENSMUST00000141128 seg_391 20193650 20196400 M chrX 47004623 47044506 + 47003141 47006163 UBA1 20281032 20294944 + CUFF.14075.2 seg_394 20294250 20296200 M chrX 47092379 47103954 + 47103171 47106480 UBA1 20539240 20563863 + ENSMUST00000136447 seg_401 20538000 20539700 M other 0 0 + 47517837 47518881 OA1 = GPR143 20937991 20941748 + ENSMUST00000127554 seg_413 20937100 20940950 M other 0 0 + 0 0 OA1 = GPR143 20938066 20940148 + ENSMUST00000132683 seg_413 20937100 20940950 M other 0 0 + 0 0 OA1 = GPR143 20938066 20940148 + ENSMUST00000132683 seg_413 20937100 20940950 M other 0 0 + 0 0 OA1 = GPR143 33428645 33616557 + CUFF.14157.1 seg_461 33428350 33432700 M chrX 117629607 117820108 + 117629279 117633627 COL4A5 33428660 33523834 + CUFF.14123.1 seg_461 33428350 33432700 M chrX 117629622 117723351 + 117629279 117633627 COL4A5 33428660 33616557 + CUFF.14123.2 seg_461 33428350 33432700 M chrX 117629622 117820108 + 117629279 117633627 COL4A5 33735899 33739153 + CUFF.14150.2 seg_470 33737800 33739550 M chrX 117957705 117960935 + 117959581 117961051 COL4A5 33868348 33882606 + CUFF.14151.3 seg_19 33867300 33870050 S chrX 118108524 118124402 + 118107473 118110151 COL4A5 33868348 33882606 + CUFF.14151.3 seg_478 33862700 33871850 M chrX 118108524 118124402 + 118101867 118111814 COL4A5 33868348 33902336 + CUFF.14151.5 seg_19 33867300 33870050 S chrX 118108524 118152100 + 118107473 118110151 COL4A5 33868348 33902336 + CUFF.14151.5 seg_478 33862700 33871850 M chrX 118108524 118152100 + 118101867 118111814 COL4A5 33868348 33902336 + CUFF.14151.4 seg_19 33867300 33870050 S chrX 118108524 118152100 + 118107473 118110151 COL4A5 33868348 33902336 + CUFF.14151.4 seg_478 33862700 33871850 M chrX 118108524 118152100 + 118101867 118111814 COL4A5 34138199 34138634 + CUFF.14127.1 seg_490 34136250 34139900 M chrX 118370243 118370677 + 118368673 118372101 OCRL 34139837 34139989 + CUFF.14154.1 seg_490 34136250 34139900 M chrX 118372040 118372343 + 118368673 118372101 OCRL 34148309 34185415 − CUFF.14129.2 seg_492 34184100 34185750 M chrX 118380626 118407635 − 118406356 118407906 OCRL 34148309 34185417 − CUFF.14156.1 seg_492 34184100 34185750 M chrX 118380626 118407637 − 118406356 118407906 OCRL 34190337 34208188 − CUFF.14126.1 seg_493 34207150 34209200 M chrX 118415403 118422937 − 0 0 OCRL 34208212 34209008 + ENSMUST00000118173 seg_493 34207150 34209200 M other 0 0 + 0 0 OA1 = GPR143 34208212 34209008 + ENSMUST00000118173 seg_493 34207150 34209200 M other 0 0 + 0 0 OA1 = GPR143 34354766 34357180 − ENSMUST00000170210 seg_495 34353300 34354950 M chrX 118627272 118628472 − 118625327 118626697 OCRL 34354766 34357180 − ENSMUST00000170210 seg_495 34353300 34354950 M chrX 118627272 118628472 − 118625327 118626697 OCRL 34391130 34404168 − ENSMUST00000143544 seg_496 34403300 34405050 M chrX 118673725 118699359 − 118693658 118699484 OCRL 34414316 34415329 + CUFF.14162.1 seg_497 34414150 34417000 M chrX 118708489 118709503 + 118708340 118710452 OCRL 34414316 34414834 + CUFF.14162.2 seg_497 34414150 34417000 M chrX 118708489 118708986 + 118708340 118710452 OCRL 34414323 34414681 + CUFF.14131.1 seg_497 34414150 34417000 M chrX 118708496 118708841 + 118708340 118710452 OCRL 34427535 34443093 − CUFF.14163.2 seg_500 34441550 34443350 M chrX 118722300 118740065 − 118738473 118740315 OCRL 34442912 34442959 + CUFF.14135.1 seg_500 34441550 34443350 M chrX 118739875 118739921 + 118738473 118740315 OCRL 34443059 34443464 − CUFF.14136.1 seg_500 34441550 34443350 M chrX 118740012 118740391 − 118738473 118740315 OCRL 34443156 34443320 − CUFF.14161.1 seg_500 34441550 34443350 M chrX 118740127 118740291 − 118738473 118740315 OCRL 34631673 34650335 − CUFF.14138.2 seg_515 34648750 34650650 M chrX 118967985 118986994 − 118985453 118987309 OCRL 34648901 34650347 − CUFF.14169.5 seg_515 34648750 34650650 M chrX 118985453 118987006 − 118985453 118987309 OCRL 35180050 35183034 + CUFF.14184.1 seg_532 35178900 35181600 M other 0 0 + 0 0 OA1 = GPR143 35180050 35183034 + CUFF.14184.1 seg_533 35182900 35184500 M other 0 0 + 0 0 OA1 = GPR143 35533905 35534803 + ENSMUST00000118349 seg_21 35533400 35534750 S other 0 0 + 0 0 OA1 = GPR143 35533905 35534803 + ENSMUST00000118349 seg_551 35532850 35535100 M other 0 0 + 0 0 OA1 = GPR143 35533905 35534803 + ENSMUST00000118349 seg_21 35533400 35534750 S other 0 0 + 0 0 OA1 = GPR143 35533905 35534803 + ENSMUST00000118349 seg_551 35532850 35535100 M other 0 0 + 0 0 OA1 = GPR143 35542915 35550223 + CUFF.14157.1 seg_552 35542250 35544050 M chrX 117629607 119392253 + 119383881 119385797 OCRL 35542935 35550223 + CUFF.14192.1 seg_552 35542250 35544050 M chrX 119384666 119392253 + 119383881 119385797 OCRL 35600278 35604805 − CUFF.14159.1 seg_22 35603700 35606500 S chrX 119439594 119444569 − 119443375 119446145 OCRL 35600278 35604805 − CUFF.14159.1 seg_556 35602250 35609250 M chrX 119439594 119444569 − 119441828 119448975 OCRL 35897792 35917936 − CUFF.14166.5 seg_566 35896800 35898250 M chrX 119672390 119695039 − 119672194 119672859 OCRL 35961900 35966603 + ENSMUST00000133128 seg_569 35960900 35962650 M chrX 119742855 119746241 + 119742376 119742750 OCRL 38754031 38966276 + ENSMUST00000128197 seg_23 38753650 38755500 S chrX 122317775 122554831 + 122317397 122319184 OCRL 38754031 38966276 + ENSMUST00000128197 seg_619 38753250 38755800 M chrX 122317775 122554831 + 122316995 122319507 OCRL 38754659 39031778 + CUFF.14209.6 seg_23 38753650 38755500 S chrX 122318324 122624766 + 122317397 122319184 OCRL 38754659 39031778 + CUFF.14209.6 seg_619 38753250 38755800 M chrX 122318324 122624766 + 122316995 122319507 OCRL 38754659 38966731 + ENSMUST00000148212 seg_23 38753650 38755500 S chrX 122318324 122555302 + 122317397 122319184 OCRL 38754659 38966731 + ENSMUST00000148212 seg_619 38753250 38755800 M chrX 122318324 122555302 + 122316995 122319507 OCRL 39155509 39265102 − CUFF.14211.5 seg_638 39262300 39268050 M chrX 122744049 122866926 − 122863888 122867232 OCRL 39166391 39265102 − CUFF.14211.10 seg_638 39262300 39268050 M chrX 122754023 122866926 − 122863888 122867232 OCRL 39264775 39265078 − CUFF.14175.17 seg_638 39262300 39268050 M chrX 122866626 122866902 − 122863888 122867232 OCRL 40177535 40782180 − ENSMUST00000154433 seg_25 40779750 40784250 S chrX 123784986 124338187 − 124335918 124340213 OCRL 40177535 40782180 − ENSMUST00000154433 seg_678 40779300 40784650 M chrX 123784986 124338187 − 124335476 124340593 OCRL 40250312 40782303 − ENSMUST00000126161 seg_25 40779750 40784250 S chrX 123836202 124338304 − 124335918 124340213 OCRL 40250312 40782303 − ENSMUST00000126161 seg_678 40779300 40784650 M chrX 123836202 124338304 − 124335476 124340593 OCRL 40677132 40782180 − ENSMUST00000125231 seg_25 40779750 40784250 S chrX 124241111 124338187 − 124335918 124340213 OCRL 40677132 40782180 − ENSMUST00000125231 seg_678 40779300 40784650 M chrX 124241111 124338187 − 124335476 124340593 OCRL 40677132 40782180 − ENSMUST00000125231 seg_25 40779750 40784250 S chrX 124241111 124338137 − 124335918 124340213 OCRL 40677132 40782180 − ENSMUST00000125231 seg_678 40779300 40784650 M chrX 124241111 124338187 − 124335476 124340593 OCRL 45162547 45245729 − CUFF.14233.3 seg_768 45243800 45248200 M chrX 128580480 128657501 − 128655532 128659505 OCRL 45227508 45245609 − ENSMUST00000141084 seg_768 45243800 45248200 M chrX 128638886 128657382 − 128655532 128659505 OCRL 45363158 45363341 + CUFF.14229.1 seg_774 45362150 45363400 M other 0 0 + 0 0 OA1 = GPR143 45363178 45363342 + CUFF.14188.1 seg_774 45362150 45363400 M other 0 0 + 0 0 OA1 = GPR143 45694175 45694423 − CUFF.14198.1 seg_28 45693200 45698600 S chrX 129113942 129114135 − 129112931 129118262 OCRL 45694175 45694423 − CUFF.14198.1 seg_793 45690600 45700600 M chrX 129113942 129114135 − 129110141 129120295 OCRL 45694535 45755264 + CUFF.14240.2 seg_28 45693200 45698600 S chrX 129114248 129186162 + 129112931 −129118262 OCRL 45694535 45755264 + CUFF.14240.2 seg_793 45690600 45700600 M chrX 129114248 129186162 + 129110141 129120295 OCRL 45694535 45761226 + CUFF.14240.3 seg_28 45693200 45698600 S chrX 129114248 129192040 + 129112931 −129118262 OCRL 45694535 45761226 + CUFF.14240.3 seg_793 45690600 45700600 M chrX 129114248 129192040 + 129110141 129120295 OCRL 45695238 45746514 + CUFF.14240.5 seg_28 45693200 45698600 S chrX 129114949 129173294 + 129112931 −129118262 OCRL 45695238 45746514 + CUFF.14240.5 seg_793 45690600 45700600 M chrX 129114949 129173294 + 129110141 129120295 OCRL 45696947 45761226 + CUFF.14240.8 seg_28 45693200 45698600 S chrX 129116613 129192040 + 129112931 −129118262 OCRL 45696947 45761226 + CUFF.14240.8 seg_793 45690600 45700600 M chrX 129116613 129192040 + 129110141 129120295 OCRL 45697574 45698600 + CUFF.14200.5 seg_28 45693200 45698600 S chrX 129117248 129118262 + 129112931 −129118262 OCRL 45697574 45698600 + CUFF.14200.5 seg_793 45690600 45700600 M chrX 129117248 129118262 + 129110141 129120295 OCRL 45764223 45810380 − CUFF.14235.1 seg_797 45799100 45810800 M chrX 129195192 129248513 − 129237507 129249292 OCRL 45806529 45807451 − CUFF.14203.1 seg_29 45805150 45807500 S chrX 129244056 129244891 − 129242747 129244939 OCRL 45806529 45807451 − CUFF.14203.1 seg_797 45799100 45810800 M chrX 129244056 129244891 − 129237507 129249292 OCRL 45976590 46015471 + CUFF.14243.2 seg_807 45976250 45977750 M chrX 129473516 129507331 + 129473042 129474708 OCRL 45976926 46005231 + ENSMUST00000153047 seg_807 45976250 45977750 M chrX 129473871 129498726 + 129473042 129474708 OCRL 46838852 46848439 + ENSMUST00000151128 seg_836 46835350 46841700 M chrX 130207473 130217728 + 130204272 130210819 NYS1 = FRMD7 46838852 46848439 + ENSMUST00000151128 seg_837 46844950 46849750 M chrX 130207473 130217728 + 130214253 130219020 NYS1 = FRMD7 47135713 47150926 − CUFF.14205.3 seg_844 47150550 47152600 M chrX 130407480 130423284 − 130422906 130424949 NYS1 = FRMD7 47139524 47150928 − CUFF.14249.5 seg_844 47150550 47152600 M chrX 130411301 130423286 − 130422906 130424949 NYS1 = FRMD7 47148122 47150912 − ENSMUST00000135492 seg_844 47150550 47152600 M chrX 130420186 130423270 − 130422906 130424949 NYS1 = FRMD7 47726321 47727201 + ENSMUST00000121522 seg_869 47726600 47729450 M other 0 0 + 0 0 OA1 = GPR143 47726321 47727201 + ENSMUST00000121522 seg_869 47726600 47729450 M other 0 0 + 0 0 OA1 = GPR143 47908921 47988438 − ENSMUST00000124842 seg_877 47987350 47989500 M other 0 0 + 0 0 OA1 = GPR143 47930580 47930887 − CUFF.14345.1 seg_875 47929100 47930850 M other 0 0 + 130875046 130875479 OA1 = GPR143 47948607 47988499 − CUFF.14211.3 seg_877 47987350 47989500 M chrX 130956109 130964776 − 0 0 NYS1 = FRMD7 47968572 47988498 − ENSMUST00000143999 seg_877 47987350 47989500 M chrX 130956109 130964775 − 0 0 NYS1 = FRMD7 47983977 47988499 − CUFF.14211.7 seg_877 47987350 47989500 M chrX 130960808 130964776 − 0 0 NYS1 = FRMD7 48368108 48371354 − CUFF.14256.2 seg_899 48367900 48369550 M chrX 131348118 131351566 − 131347929 131349656 NYS1 = FRMD7 48371324 48371616 − CUFF.14209.1 seg_900 48371400 48373300 M chrX 131351532 131351823 − 131351609 131353535 NYS1 = FRMD7 48371476 48371850 + CUFF.14210.1 seg_900 48371400 48373300 M chrX 131351714 131352061 + 131351609 131353535 NYS1 = FRMD7 49029960 49034525 − ENSMUST00000142738 seg_34 49033400 49035850 S chrX 132087343 132092376 − 132091169 132093740 NYS1 = FRMD7 49029960 49034525 − ENSMUST00000142738 seg_935 49029050 49041550 M chrX 132087343 132092376 − 132086354 132099266 NYS1 = FRMD7 49033169 49033742 − ENSMUST00000142983 seg_34 49033400 49035850 S chrX 132090938 132091521 − 132091169 132093740 NYS1 = FRMD7 49033169 49033742 − ENSMUST00000142983 seg_935 49029050 49041550 M chrX 132090938 132091521 − 132086354 132099266 NYS1 = FRMD7 49033355 49034263 − ENSMUST00000140145 seg_34 49033400 49035850 S chrX 132091124 132092112 − 132091169 132093740 NYS1 = FRMD7 49033355 49034263 − ENSMUST00000140145 seg_935 49029050 49041550 M chrX 132091124 132092112 − 132086354 132099266 NYS1 = FRMD7 49106697 49154410 − CUFF.14260.1 seg_943 49154200 49156050 M chrX 132159249 132231301 − 132231109 132231426 NYS1 = FRMD7 49404740 49405157 − CUFF.14263.1 seg_956 49404000 49405600 M chrX 132435253 132435700 − 132434518 132436079 HPRT1 = HPRT 49405289 49405837 − CUFF.14264.1 seg_956 49404000 49405600 M chrX 132435805 132436325 − 132434518 132436079 HPRT1 = HPRT 49775584 49775692 − ENSMUST00000102259 seg_976 49775500 49776800 M chrX 132880759 132880877 − 132880685 132881912 HPRT1 = HPRT 50095234 50098237 − CUFF.14267.2 seg_990 50096650 50098550 M chrX 133303779 133307009 − 133305238 133307374 HPRT1 = HPRT 50095740 50097770 − ENSMUST00000133214 seg_990 50096650 50098550 M chrX 133304296 133306522 − 133305238 133307374 HPRT1 = HPRT 50095740 50097770 − ENSMUST00000138156 seg_990 50096650 50098550 M chrX 133304296 133306522 − 133305238 133307374 HPRT1 = HPRT 50095740 50097770 − ENSMUST00000143479 seg_990 50096650 50098550 M chrX 133304296 133306522 − 133305238 133307374 HPRT1 = HPRT 50095740 50097770 − ENSMUST00000138156 seg_990 50096650 50098550 M chrX 133304296 133306522 − 133305238 133307374 HPRT1 = HPRT 50095740 50097770 − ENSMUST00000143479 seg_990 50096650 50098550 M chrX 133304296 133306522 − 133305238 133307374 HPRT1 = HPRT 50265390 50265600 + CUFF.14269.1 seg_1001 50264950 50267500 M chrX 133507274 133507484 + 133506826 133509357 HPRT1 = HPRT 50265421 50310120 + CUFF.14222.1 seg_1001 50264950 50267500 M chrX 133507305 133562820 + 133506826 133509357 HPRT1 = HPRT 50341229 50374836 + CUFF.14271.1 seg_1003 50340900 50342400 M chrX 133594153 133634696 + 133593796 133595251 HPRT1 = HPRT 50341250 50341769 + CUFF.14224.1 seg_1003 50340900 50342400 M chrX 133594174 133594686 + 133593796 133595251 HPRT1 = HPRT 50407432 50407526 − ENSMUST00000083484 seg_1004 50407500 50413850 M chrX 133680658 133680753 − 133680727 133686885 HPRT1 = HPRT 50408223 50410367 − ENSMUST00000155622 seg_1004 50407500 50413850 M chrX 133681640 133683674 − 133680727 133686885 HPRT1 = HPRT 50408223 50410367 − ENSMUST00000155622 seg_37 50410150 50413500 S chrX 133681640 133683674 − 133683549 133686542 HPRT1 = HPRT 50408947 50410413 − CUFF.14272.4 seg_1004 50407500 50413850 M chrX 133682420 133683720 − 133680727 133686885 HPRT1 = HPRT 50408947 50410413 − CUFF.14272.4 seg_37 50410150 50413500 S chrX 133682420 133683720 − 133683549 133686542 HPRT1 = HPRT 50409370 50410367 − ENSMUST00000151099 seg_1004 50407500 50413850 M chrX 133682808 133683674 − 133680727 133686885 HPRT1 = HPRT 50409370 50410367 − ENSMUST00000151099 seg_37 50410150 50413500 S chrX 133682808 133683674 − 133683549 133686542 HPRT1 = HPRT 50409370 50410367 − ENSMUST00000151099 seg_1004 50407500 50413850 M chrX 133682808 133683674 − 133680727 133686885 HPRT1 = HPRT 50409370 50410367 − ENSMUST00000151099 seg_37 50410150 50413500 S chrX 133682808 133683674 − 133683549 133686542 HPRT1 = HPRT 51076013 51076306 + ENSMUST00000119948 seg_1035 51076300 51080000 M other 0 0 + 0 0 OA1 = GPR143 51272614 51278177 − ENSMUST00000152691 seg_1038 51276550 51281350 M other 0 0 + 0 0 OA1 = GPR143 51272614 51278177 − ENSMUST00000152691 seg_39 51277000 51280800 S other 0 0 + 0 0 OA1 = GPR143 53599576 53618851 + CUFF.14301.1 seg_1050 53618100 53619850 M chrX 134478720 134497065 + 134496269 134497771 HPRT1 = HPRT 53838689 53851246 − CUFF.14304.2 seg_1060 53850250 53852000 M chrX 135044238 135056037 − 135055069 135057268 HPRT1 = HPRT 53863012 53908257 + CUFF.14306.3 seg_1062 53862950 53864950 M chrX 135067645 135115687 + 135067584 135069491 HPRT1 = HPRT 53984857 54043843 + CUFF.14254.1 seg_1073 53983050 53986450 M chrX 135229595 135290816 + 135226915 135231187 HPRT1 = HPRT 53984936 54043843 + CUFF.14308.1 seg_1073 53983050 53986450 M chrX 135229664 135290816 + 135226915 135231187 HPRT1 = HPRT 54484662 54494066 − ENSMUST00000151768 seg_1092 54492950 54494750 M chrX 135747707 135759091 − 135758146 135759853 HPRT1 = HPRT 54644626 54644698 − ENSMUST00000083176 seg_1095 54644100 54645900 M chrX 135961358 135961432 − 135961062 135962620 HPRT1 = HPRT 54644626 54644698 − ENSMUST00000083176 seg_1095 54644100 54645900 M chrX 135961358 135961432 − 135961062 135962620 HPRT1 = HPRT 54939724 54991732 − ENSMUST00000117477 seg_1113 54988950 54990200 M other 0 0 + 0 0 OA1 = GPR143 55175146 55175209 + CUFF.14315.1 seg_1124 55168950 55177100 M chrX 136512124 136512176 + 136505920 136514806 F9 55175146 55175209 + CUFF.14315.1 seg_43 55169850 55176350 S chrX 136512124 136512176 + 136506771 136513469 F9 55283804 55294913 + CUFF.14261.2 seg_1129 55279400 55288000 M chrX 136648285 136659851 + 136643868 136652525 F9 55283804 55294913 + CUFF.14261.2 seg_1130 55290400 55296750 M chrX 136648285 136659851 + 136654976 136660703 F9 55283804 55294913 + CUFF.14261.2 seg_45 55283050 55287350 S chrX 136648285 136659851 + 136647552 136651893 F9 55283804 55286873 + CUFF.14316.3 seg_1129 55279400 55288000 M chrX 136648285 136651403 + 136643868 136652525 F9 55283804 55286873 + CUFF.14316.3 seg_45 55283050 55287350 S chrX 136648285 136651403 + 136647552 136651893 F9 55291586 55291918 − CUFF.14263.1 seg_1130 55290400 55296750 M chrX 132435253 132435700 − 136654976 136660703 HPRT1 = HPRT 56316667 56386391 − ENSMUST00000138503 seg_1161 56386000 56388000 M chrX 137714968 137792332 − 137791961 137793923 F9 56421226 56421304 − CUFF.14323.1 seg_1163 56418350 56421350 M chrX 137823466 137823544 − 137820604 137823585 F9 57309131 57432445 − CUFF.14324.1 seg_1198 57428450 57434700 M chrX 138663919 138774744 − 138771736 138780855 F9 57377877 57431535 − CUFF.14324.7 seg_1198 57428450 57434700 M chrX 138699663 138773758 − 138771736 138780855 F9 57392756 57392833 − CUFF.14325.1 seg_1197 57391850 57393700 M other 0 0 + 138714942 138716185 OA1 = GPR143 57488638 57657223 − CUFF.14329.7 seg_1205 57655000 57659550 M chrX 138818955 139014388 − 139012164 139017130 F9 57488638 57657479 − CUFF.14272.6 seg_1205 57655000 57659550 M chrX 138818955 139014657 − 139012164 139017130 F9 57657230 57657464 + CUFF.14273.1 seg_1205 57655000 57659550 M chrX 139014395 139014642 + 139012164 139017130 F9 57657681 57657808 + CUFF.14274.1 seg_1205 57655000 57659550 M chrX 139014914 139015030 + 139012164 139017130 F9 57761975 57762010 − CUFF.14277.1 seg_1210 57761900 57763800 M other 0 0 + 0 0 OA1 = GPR143 57801194 57802024 + ENSMUST00000117865 seg_1212 57799400 57803350 M chrX 139173902 139174723 + 139172227 139176447 F9 57801194 57802024 + ENSMUST00000117865 seg_1212 57799400 57803350 M chrX 139173902 139174723 + 139172227 139176447 F9 58144545 58146615 − CUFF.14269.1 seg_1227 58140550 58155350 M chrX 133507274 133507484 + 139580491 139597036 HPRT1 = HPRT 58144545 58146615 − CUFF.14269.1 seg_49 58143750 58152800 S chrX 133507274 133507484 + 139584340 139594145 HPRT1 = HPRT 58146828 58151242 + ENSMUST00000145552 seg_1227 58140550 58155350 M chrX 139587446 139592481 + 139580491 139597036 F9 58146828 58151242 + ENSMUST00000145552 seg_49 58143750 58152800 S chrX 139587446 139592481 + 139584340 139594145 F9 65920689 65931574 − ENSMUST00000101520 seg_1309 65930300 65933100 M chrX 146974056 146993242 − 146992254 146994838 FMR1 65931716 65951510 + CUFF.14287.2 seg_1309 65930300 65933100 M chrX 146993398 147012157 + 146992254 146994838 FMR1 65931716 65970681 + CUFF.14287.3 seg_1309 65930300 65933100 M chrX 146993398 147032195 + 146992254 146994838 FMR1 65931716 65970681 + CUFF.14352.1 seg_1309 65930300 65933100 M chrX 146993398 147032195 + 146992254 146994838 FMR1 65932068 65932563 + CUFF.14288.1 seg_1309 65930300 65933100 M chrX 146993774 146994298 + 146992254 146994838 FMR1 65932227 65932774 + CUFF.14353.1 seg_1309 65930300 65933100 M chrX 146993961 146994506 + 146992254 146994838 FMR1 66858632 66859423 − ENSMUST00000163828 seg_1334 66859150 66860650 M other 0 0 + 0 0 OA1 = GPR143 66858632 66859428 − ENSMUST00000163828 seg_1334 66859150 66860650 M other 0 0 + 0 0 OA1 = GPR143 66353671 66859420 − ENSMUST00000120762 seg_1334 66859150 66860650 M other 0 0 + 0 0 OA1 = GPR143 67712928 67730355 − CUFF.14360.2 seg_1361 67729150 67730900 M chrX 148678210 148713485 − 148712175 148714034 MTM1 67712928 67730355 − CUFF.14295.2 seg_1361 67729150 67730900 M chrX 148678210 148713485 − 148712175 148714034 MTM1 67716098 67730317 − ENSMUST00000134954 seg_1361 67729150 67730900 M chrX 148682045 148713449 − 148712175 148714034 MTM1 68291015 68303292 − CUFF.14296.1 seg_1381 68301500 68306350 M chrX 149520032 149531563 − 149529888 149534532 MTM1 68291015 68303292 − CUFF.14296.1 seg_51 68301750 68305800 S chrX 149520032 149531563 − 149530085 149534002 MTM1 68809081 68812693 + CUFF.14369.2 seg_1404 68805250 68809850 M chrX 150151747 150156053 + 150146455 150152649 MTM1 68809092 68812471 + CUFF.14301.1 seg_1404 68805250 68809850 M chrX 134478720 134497065 + 150146455 150152649 HPRT1 = HPRT 68809408 68809659 + CUFF.14301.6 seg_1404 68805250 68809850 M chrX 150152106 150152390 + 150146455 150152649 MTM1 68809643 68809983 + CUFF.14370.1 seg_1404 68805250 68809850 M chrX 150152374 150152784 + 150146455 150152649 MTM1 68809715 68813851 + CUFF.14301.7 seg_1404 68805250 68809850 M chrX 150152446 150157265 + 150146455 150152649 MTM1 68917141 68920567 + ENSMUST00000131554 seg_1411 68914050 68921750 M chrX 150345344 150349110 + 150341934 150350499 MTM1 68917141 68920567 + ENSMUST00000131554 seg_53 68914500 68919750 S chrX 150345344 150349110 + 150342370 150348293 MTM1 68917141 68920567 + ENSMUST00000144712 seg_1411 68914050 68921750 M chrX 150345344 150349110 + 150341934 150350499 MTM1 68917141 68920567 + ENSMUST00000144712 seg_53 68914500 68919750 S chrX 150345344 150349110 + 150342370 150348293 MTM1 69062152 69066323 + ENSMUST00000138979 seg_1416 69061200 69063200 M chrX 150565693 150573568 + 150564437 150567623 MTM1 69062152 69066323 + ENSMUST00000138979 seg_1416 69061200 69063200 M chrX 150565698 150573568 + 150564437 150567623 MTM1 69514307 69520142 − ENSMUST00000153740 seg_1436 69517250 69520800 M chrX 151137877 151143202 − 151139787 151143870 MTM1 69519852 69520142 − CUFF.14310.4 seg_1436 69517250 69520800 M chrX 151142857 151143202 − 151139787 151143870 MTM1 70232678 70261234 + CUFF.14389.3 seg_1465 70232550 70233700 M chrX 152066590 152132534 + 152066464 152067633 ABCD1 70232678 70276882 + CUFF.14389.4 seg_1465 70232550 70233700 M chrX 152066590 152142042 + 152066464 152067633 ABCD1 70232678 70276882 + CUFF.14389.4 seg_1469 70276250 70277250 M chrX 152066590 152142042 + 152141408 152142118 ABCD1 70232678 70276882 + CUFF.14389.2 seg_1465 70232550 70233700 M chrX 152066590 152142042 + 152066464 152067633 ABCD1 70232678 70276882 + CUFF.14389.2 seg_1469 70276250 70277250 M chrX 152066590 152142042 + 152141408 152142118 ABCD1 70659581 70659693 + CUFF.14395.1 seg_1486 70655550 70660200 M other 0 0 + 152676030 152680458 OA1 = GPR143 70682654 70704414 − CUFF.14396.3 seg_1489 70702900 70704800 M chrX 152713126 152736112 − 152731557 152736608 ABCD1 70748725 70748751 − CUFF.14336.1 seg_1493 70748300 70751550 M chrX 152783390 152783425 − 152783051 152786127 ABCD1 70884707 70887453 + CUFF.14399.1 seg_1504 70880250 70886600 M chrX 152912601 152915465 + 152907256 152914605 ABCD1 70884707 70887453 + CUFF.14399.1 seg_56 70884700 70886100 S chrX 152912601 152915465 + 152912593 152913737 ABCD1 70918489 70919425 + CUFF.14406.3 seg_1507 70919050 70921750 M chrX 152953368 152954327 + 152953952 152956569 ABCD1 71038698 71070106 − CUFF.14350.4 seg_1515 71069800 71072250 M chrX 153067624 153096149 − 153095872 153098097 L1CAM 71167461 71171740 − ENSMUST00000135213 seg_1524 71165700 71168200 M chrX 153200721 153205716 − 153198707 153201262 AVPR2 71188131 71212039 − CUFF.14346.3 seg_1526 71210350 71212250 M chrX 153213005 153236998 − 153235226 153237200 AVPR2 71209543 71210383 − CUFF.14432.1 seg_1526 71210350 71212250 M chrX 153234378 153235269 − 153235226 153237200 AVPR2 71212129 71212322 − CUFF.14347.1 seg_1526 71210350 71212250 M chrX 153237078 153237272 − 153235226 153237200 AVPR2 71252041 71252841 + ENSMUST00000120692 seg_1528 71251100 71253700 M other 0 0 + 0 0 OA1 = GPR143 71252041 71252841 + ENSMUST00000120692 seg_1528 71251100 71253700 M other 0 0 + 0 0 OA1 = GPR143 71491032 71491211 − CUFF.14417.1 seg_1536 71489000 71492050 M chrX 153598856 153599051 − 153596991 153599880 EMD 71491144 71491278 − CUFF.14563.1 seg_1536 71489000 71492050 M chrX 153598983 153599133 − 153596991 153599880 EMD 71500026 71500436 + CUFF.14439.2 seg_1537 71499550 71501250 M chrX 153607566 153607980 + 153606662 153608766 EMD 71500100 71501024 + ENSMUST00000129516 seg_1537 71499550 71501250 M chrX 153607643 153608527 + 153606662 153608766 EMD 71527251 71528204 + ENSMUST00000146260 seg_1538 71525800 71528950 M chrX 153637932 153640001 + 153636852 153640773 EMD 71527251 71528254 + ENSMUST00000135012 seg_1538 71525800 71528950 M chrX 153637932 153640082 + 153636852 153640773 EMD 71527980 71535490 + CUFF.14421.3 seg_1538 71525800 71528950 M chrX 153639773 153650067 + 153636852 153640773 EMD 71528089 71533374 + ENSMUST00000156880 seg_1538 71525800 71528950 M chrX 153639886 153647898 + 153636852 153640773 EMD 71528089 71535487 + ENSMUST00000124200 seg_1538 71525800 71528950 M chrX 153639886 153650064 + 153636852 153640773 EMD 71528090 71535488 + ENSMUST00000114182 seg_1538 71525800 71528950 M chrX 153639887 153650065 + 153636852 153640773 EMD 71550319 71557201 + CUFF.14360.2 seg_1540 71549400 71551350 M chrX 148678210 148713485 − 153664294 153666201 MTM1 71550319 71553622 + CUFF.14360.1 seg_1540 71549400 71551350 M chrX 148678210 153668876 − 153664294 153666201 OA1 = GPR143 71550337 71553623 + CUFF.14449.2 seg_1540 71549400 71551350 M chrX 153665244 153668877 + 153664294 153666201 EMD 71574384 71597045 + CUFF.14364.2 seg_1542 71572900 71574500 M chrX 153686599 153705719 + 153686144 153686719 IKBKG 71574384 71590028 + CUFF.14364.1 seg_1542 71572900 71574500 M chrX 153686599 153702184 + 153686144 153686719 IKBKG 71574404 71588866 + CUFF.14453.2 seg_1542 71572900 71574500 M chrX 153686620 153701013 + 153686144 153686719 IKBKG 71598672 71598963 − CUFF.14450.4 seg_1543 71597350 71599550 M chrX 153707075 153707335 − 153706026 153707314 IKBKG 71598672 71598963 − CUFF.14450.4 seg_58 71597850 71598950 S chrX 153707075 153707335 − 153706412 153707323 IKBKG 71675010 71699193 + CUFF.14372.14 seg_1547 71673000 71675050 M chrX 153775825 153799420 + 153773591 153775852 G6PD = G6PDX 72388763 72388969 + ENSMUST00000121894 seg_1564 72385650 72389350 M other 0 0 + 0 0 OA1 = GPR143 72388763 72388969 + ENSMUST00000121894 seg_1564 72385650 72389350 M other 0 0 + 0 0 OA1 = GPR143 72389027 72389809 + ENSMUST00000116535 seg_1564 72385650 72389350 M other 0 0 + 0 0 OA1 = GPR143 72389027 72389809 + ENSMUST00000116535 seg_1564 72385650 72389350 M other 0 0 + 0 0 OA1 = GPR143 72759615 72762429 + CUFF.14477.1 seg_1574 72758200 72760250 M chrX 154444700 154448461 + 154444033 154445346 F8 72759656 72767094 + ENSMUST00000123419 seg_1574 72758200 72760250 M chrX 154444742 154456167 + 154444033 154445346 F8 73030993 73120555 − CUFF.14480.2 seg_1582 73118600 73123600 M chrX 114795419 114885001 + 114793736 114797278 COL4A5 73120309 73120521 − CUFF.14390.7 seg_1582 73118600 73123600 M chrX 114795453 114795667 + 114793736 114797278 COL4A5 75715283 75829194 − ENSMUST00000126209 seg_1613 75828600 75830000 M chrX 37208552 37301473 + 37207651 37209173 XK 75715283 75829194 − ENSMUST00000126209 seg_1613 75828600 75830000 M chrX 37208552 37301473 + 37207651 37209173 XK 75726052 75829121 − ENSMUST00000126994 seg_1612 75725050 75728900 M chrX 37208635 37293306 + 37285442 37294050 XK 75726052 75829121 − ENSMUST00000126994 seg_1613 75828600 75830000 M chrX 37208635 37293306 + 37207651 37209173 XK 75762644 75829230 − ENSMUST00000148345 seg_1613 75828600 75830000 M chrX 37208533 37269301 + 37207651 37209173 XK 78316009 78316663 + CUFF.14419.1 seg_1627 78315700 78317600 M chrX 34645190 34675419 − 34673892 34675817 XK 78316009 78343211 + CUFF.14508.1 seg_1627 78315700 78317600 M chrX 34645190 34675419 − 34673892 34675817 XK 78316009 78343211 + CUFF.14508.1 seg_1628 78342250 78344000 M chrX 34645190 34675419 − 34644751 34646161 XK 78316037 78340115 + ENSMUST00000150052 seg_1627 78315700 78317600 M chrX 34648380 34675385 − 34673892 34675817 XK 82819228 82867039 + CUFF.14513.1 seg_1719 82818550 82821050 M chrX 30845559 30907504 − 30905718 30908242 DAX1 = NROB1 82819228 82879808 + CUFF.14513.2 seg_1719 82818550 82821050 M chrX 30845559 30907504 − 30905718 30908242 DAX1 = NROB1 82819378 82820964 + ENSMUST00000152880 seg_1719 82818550 82821050 M chrX 30905799 30907361 − 30905718 30908242 DAX1 = NROB1 82961777 82962362 + ENSMUST00000121559 seg_1723 82962000 82963000 M other 0 0 + 0 0 OA1 = GPR143 82961777 82962362 + ENSMUST00000121559 seg_1723 82962000 82963000 M other 0 0 + 0 0 OA1 = GPR143 83561422 83564035 + ENSMUST00000119460 seg_1743 83560850 83562500 M other 0 0 + 0 0 OA1 = GPR143 83561422 83564035 + ENSMUST00000119460 seg_1743 83560850 83562500 M other 0 0 + 0 0 OA1 = GPR143 83590162 83591184 − ENSMUST00000116183 seg_1745 83591000 83592600 M chrX 30260253 30261290 + 30260067 30260445 DAX1 = NROB1 83658987 83659063 − CUFF.14521.1 seg_1747 83657050 83660550 M other 0 0 + 30223407 30223935 OA1 = GPR143 91077474 91077950 + CUFF.14448.1 seg_1867 91076600 91079100 M chrX 24482937 24483410 − 24481558 24484296 SAT = SAT1 91780815 91787329 − ENSMUST00000153386 seg_1916 91786200 91788100 M chrX 51636754 51645448 + 51635991 51637836 MRX1 = IQSEC2 91784323 91787522 − CUFF.14462.8 seg_1915 91782700 91784350 M chrX 51636562 51639796 + 51639769 51641672 MRX1 = IQSEC2 91784323 91787522 − CUFF.14462.8 seg_1916 91786200 91788100 M chrX 51636562 51639796 + 51635991 51637836 MRX1 = IQSEC2 91792302 91792908 − ENSMUST00000119908 seg_1917 91791500 91792700 M other 0 0 + 0 0 OA1 = GPR143 91792302 91792908 − ENSMUST00000119908 seg_1917 91791500 91792700 M other 0 0 + 0 0 OA1 = GPR143 91881387 91888583 + CUFF.14550.1 seg_1921 91880500 91882850 M chrX 51486509 51491404 + 51485472 51487965 CLCN5 91881387 91888583 + CUFF.14550.1 seg_65 91881050 91882300 S chrX 51486509 51491404 + 51485154 51487415 CLCN5 91881415 91888583 + ENSMUST00000137033 seg_1921 91880500 91882850 M chrX 51486537 51491404 + 51485472 51487965 CLCN5 91881415 91888583 + ENSMUST00000137033 seg_65 91881050 91882300 S chrX 51486537 51491404 + 51486154 51487415 CLCN5 91916842 91918459 − ENSMUST00000119588 seg_1926 91916750 91920300 M other 0 0 + 0 0 OA1 = GPR143 91916842 91918459 − ENSMUST00000119588 seg_1926 91916750 91920300 M other 0 0 + 0 0 OA1 = GPR143 92017958 92019373 − ENSMUST00000118127 seg_1931 92019100 92020400 M other 0 0 + 0 0 OA1 = GPR143 92017958 92019373 − ENSMUST00000118127 seg_1931 92019100 92020400 M other 0 0 + 0 0 OA1 = GPR143 92020317 92021016 − ENSMUST00000121899 seg_1931 92019100 92020400 M other 0 0 + 0 0 OA1 = GPR143 92020317 92021016 − ENSMUST00000121899 seg_1931 92019100 92020400 M other 0 0 + 0 0 OA1 = GPR143 92035056 92035685 + ENSMUST00000117813 seg_1932 92035250 92039800 M other 0 0 + 0 0 OA1 = GPR143 92035056 92035685 + ENSMUST00000117813 seg_1932 92035250 92039800 M other 0 0 + 0 0 OA1 = GPR143 92038442 92043576 + ENSMUST00000057963 seg_1932 92035250 92039800 M chrX 57931970 57936908 + 0 0 ALAS2 92907017 93120097 + ENSMUST00000150123 seg_1970 92906500 92907900 M other 0 0 + 64253522 64255559 OA1 = GPR143 92907017 93120097 + ENSMUST00000150123 seg_1970 92905500 92907900 M other 0 0 + 64253522 64255559 OA1 = GPR143 93291330 93363894 + CUFF.14565.1 seg_1985 93291150 93293200 M chrX 64887470 64961795 + 64887278 64888973 AR 93291330 93363894 + CUFF.14565.2 seg_1985 93291150 93293200 M chrX 64887470 64961795 + 64887278 64888973 AR 96132488 96144356 + CUFF.14576.2 seg_2066 96130800 96134100 M chrX 67718666 67757125 + 67717473 67719790 AR 96132695 96144356 + CUFF.14576.5 seg_2066 96130800 96134100 M chrX 67718666 67757125 + 67717473 67719790 AR 96133100 96140245 + ENSMUST00000149082 seg_2066 96130800 96134100 M chrX 67718666 67751756 + 67717473 67719790 AR 96237920 96270067 + CUFF.14578.2 seg_2070 96236650 96240350 M chrX 67913429 67945678 + 67911949 67915944 ED1 = EDA 96237920 96265783 + CUFF.14486.3 seg_2070 96236650 96240350 M chrX 67913429 67942045 + 67911949 67915944 ED1 = EDA 96331411 96344330 + CUFF.14577.2 seg_2076 96329150 96335250 M chrX 68048806 68061977 + 68046540 68052833 ED1 = EDA 96331411 96344330 + CUFF.14577.1 seg_2076 96329150 96335250 M chrX 68048806 68061977 + 68046540 68052833 ED1 = EDA 96509316 96509440 + CUFF.14581.1 seg_2092 96508650 96510100 M chrX 68233310 68233735 + 68232377 68234110 ED1 = EDA 96600670 96639136 − ENSMUST00000156494 seg_2105 96638050 96640450 M chrX 68316315 68357637 − 68356517 68359344 ED1 = EDA 96600670 96639136 − ENSMUST00000156494 seg_69 96638500 96639900 S chrX 68316315 68357637 − 68356970 68358498 ED1 = EDA 96600670 96639136 − ENSMUST00000156494 seg_2105 96638050 96640450 M chrX 68316315 68357637 − 68356517 68359344 ED1 = EDA 96600670 96639136 − ENSMUST00000156494 seg_69 96638500 96639900 S chrX 68316315 68357637 − 68356970 68358498 ED1 = EDA 97015446 97015868 + CUFF.14585.1 seg_2130 97013850 97018550 M chrX 68724170 68724592 + 68722532 68727304 ED1 = EDA 97015934 97016205 − CUFF.14494.1 seg_2130 97013850 97018550 M chrX 68724653 68724923 − 68722532 68727304 ED1 = EDA 97016120 97016273 + CUFF.14493.1 seg_2130 97013850 97018550 M chrX 68724838 68724991 + 68722532 68727304 ED1 = EDA 97170822 97506638 + CUFF.14505.2 seg_2136 97168850 97172800 M chrX 68835853 69179424 + 68833901 68837825 ED1 = EDA 97170822 97596101 + CUFF.14505.1 seg_2136 97168850 97172800 M chrX 68835853 69259315 + 68833901 68837825 ED1 = EDA 97170904 97596101 + CUFF.14597.1 seg_2136 97168850 97172800 M chrX 68835936 69259315 + 68833901 68837825 ED1 = EDA 97170904 97596101 + CUFF.14597.1 seg_71 97170850 97172350 S chrX 68835936 69259315 + 68835881 68837401 ED1 = EDA 97925212 97927787 + ENSMUST00000144912 seg_2169 97927300 97928500 M chrX 69642906 69645256 + 69644718 69645993 GJB1 97925212 97927787 + ENSMUST00000144912 seg_2169 97927300 97928500 M chrX 69642906 69645256 + 69644718 69645993 GJB1 97962972 97982921 − CUFF.14507.1 seg_2171 97962150 97963800 M chrX 69664586 69686006 − 69663824 69665432 GJB1 97962972 97972554 − CUFF.14507.2 seg_2171 97962150 97963800 M chrX 69664586 69674956 − 69663824 69665432 GJB1 97968278 97968379 − CUFF.14599.1 seg_2172 97966450 97968300 M chrX 69670135 69670233 − 69668211 69670157 GJB1 98254349 98254631 + ENSMUST00000119001 seg_2185 98253850 98256950 M other 0 0 + 0 0 OA1 = GPR143 98449812 98456212 + CUFF.14512.1 seg_2194 98449350 98457550 M chrX 70316012 70323383 + 70315553 70324518 GJB1 98835383 98849934 + CUFF.14619.1 seg_2212 98834250 98836650 M chrX 70752905 70766816 + 70751717 70754177 GJB1 98835383 98849934 + CUFF.14619.1 seg_74 98834700 98835950 S chrX 70752905 70766816 + 70752200 70753489 GJB1 98835399 98849983 + CUFF.14523.2 seg_2212 98834250 98836650 M chrX 70752921 70766864 + 70751717 70754177 GJB1 98835399 98849983 + CUFF.14523.2 seg_74 98834700 98835950 S chrX 70752921 70766864 + 70752200 70753489 GJB1 98835952 98836294 + CUFF.14620.1 seg_2212 98834250 98836650 M chrX 70753491 70753847 + 70751717 70754177 GJB1 98986564 98988647 − ENSMUST00000056225 seg_2222 98985950 98987350 M chrX 70883692 70885694 − 70883129 70884479 GJB1 98986564 98988647 − ENSMUST00000056225 seg_2222 98985950 98987350 M chrX 70883692 70885694 − 70883129 70884479 GJB1 99044721 99287394 + CUFF.14621.1 seg_2226 99040300 99051650 M chrX 71130717 71373136 + 71125932 71136845 GJB1 99044721 99287394 + CUFF.14621.1 seg_2245 99286300 99288050 M chrX 71130717 71373136 + 71372238 71373440 GJB1 99044721 99287394 + CUFF.14621.1 seg_77 99044000 99047000 S chrX 71130717 71373136 + 71129999 71133070 GJB1 99044724 99144974 + ENSMUST00000125115 seg_2226 99040300 99051650 M chrX 71130720 71230692 + 71125932 71136845 GJB1 99044724 99144974 + ENSMUST00000125115 seg_77 99044000 99047000 S chrX 71130720 71230692 + 71129999 71133070 GJB1 99337055 99352453 − CUFF.14618.1 seg_2248 99352000 99354000 M chrX 71423283 71458939 − 71458371 71460230 GJB1 99337055 99352458 − CUFF.14618.2 seg_2248 99352000 99354000 M chrX 71423238 71458939 − 71458371 71460230 GJB1 99709314 99839595 − CUFF.14533.2 seg_2272 99838800 99841900 M chrX 71798692 71934148 − 71933638 71937216 GJB1 99750118 99839585 − CUFF.14637.7 seg_2272 99838800 99841900 M chrX 71838498 71934132 − 71933638 71937216 GJB1 100355529 100360903 − CUFF.14548.1 seg_2304 100359250 100361100 M other 0 0 + 0 0 OA1 = GPR143 100358233 100360766 − ENSMUST00000087891 seg_2304 100359250 100361100 M other 0 0 + 0 0 OA1 = GPR143 100358233 100360766 − ENSMUST00000087891 seg_2304 100359250 100361100 M other 0 0 + 0 0 OA1 = GPR143 100358449 100360746 − ENSMUST00000133472 seg_2304 100359250 100361100 M other 0 0 + 0 0 OA1 = GPR143 100618468 100618584 + CUFF.14647.1 seg_2317 100617500 100619350 M other 0 0 + 0 0 OA1 = GPR143 100724822 100725046 + ENSMUST00000117673 seg_2323 100724000 100725850 M other 0 0 + 0 0 OA1 = GPR143 100891328 100891351 + CUFF.14559.1 seg_2326 100885800 100893650 M chrX 73755234 73755237 − 73752844 73758155 ABCB7 101162901 101176626 − CUFF.14563.3 seg_2349 101174700 101177750 M chrX 73816770 73834464 − 73832504 73835755 ABCB7 101162901 101176626 − CUFF.14563.3 seg_86 101175150 101176300 S chrX 73816770 73834464 − 73832957 73834636 ABCB7 101272773 101396532 − CUFF.14564.2 seg_2362 101392900 101398450 M chrX 73953408 74145290 − 74141968 74147202 ABCB7 101272773 101396549 − CUFF.14668.2 seg_2362 101392900 101398450 M chrX 73953408 74145305 − 74141968 74147202 ABCB7 101396608 101396824 − CUFF.14673.1 seg_2362 101392900 101398450 M chrX 74145376 74145592 − 74141968 74147202 ABCB7 101531844 101543844 − CUFF.14676.1 seg_2367 101528100 101532450 M other 0 0 + 0 0 OA1 = GPR143 101531844 101543844 − CUFF.14676.1 seg_2368 101541300 101544300 M other 0 0 + 0 0 OA1 = GPR143 101541168 101543573 − ENSMUST00000120233 seg_2368 101541300 101544300 M other 0 0 + 0 0 OA1 = GPR143 101941821 101942111 + ENSMUST00000122247 seg_2393 101941250 101943000 M other 0 0 + 0 0 OA1 = GPR143 101941821 101942111 + ENSMUST00000122247 seg_2393 101941250 101943000 M other 0 0 + 0 0 OA1 = GPR143 102143124 102143621 + ENSMUST00000122012 seg_2402 102141200 102143500 M other 0 0 + 0 0 OA1 = GPR143 102143124 102143621 + ENSMUST00000122012 seg_2402 102141200 102143500 M other 0 0 + 0 0 OA1 = GPR143 102227925 102228705 + ENSMUST00000119287 seg_2410 102228100 102229200 M other 0 0 + 0 0 OA1 = GPR143 102227925 102228705 + ENSMUST00000119287 seg_2410 102228100 102229200 M other 0 0 + 0 0 OA1 = GPR143 102920467 102920853 − ENSMUST00000071515 seg_2434 102920350 102921650 M other 0 0 + 0 0 OA1 = GPR143 102920467 102920853 − ENSMUST00000071515 seg_2434 102920350 102921650 M other 0 0 + 0 0 OA1 = GPR143 103106842 103124685 − ENSMUST00000126345 seg_2443 103106750 103108550 M chrX 76995795 77041698 − 76995713 77031704 ATRX 103555795 103579410 − ENSMUST00000122015 seg_2457 103554800 103556200 M chrX 77422903 77428610 − 0 0 PGK1 103828136 103828642 − ENSMUST00000117308 seg_2469 103326550 103828400 M other 0 0 + 0 0 OA1 = GPR143 106030003 106034841 + ENSMUST00000145250 seg_2523 106034050 106035400 M chrX 80065639 80068874 + 0 0 PGK1 106030003 106034841 + ENSMUST00000145250 seg_2523 106034050 106035400 M chrX 80065639 80068874 + 0 0 PGK1 106196824 106197635 + ENSMUST00000120648 seg_2527 106195700 106197350 M other 0 0 + 0 0 OA1 = GPR143 106196824 106197635 + ENSMUST00000120648 seg_2527 106195700 106197350 M other 0 0 + 0 0 OA1 = GPR143 109008832 109008863 − CUFF.14605.1 seg_2583 109005500 109010500 M other 0 0 + 0 0 OA1 = GPR143 109714135 109739682 + ENSMUST00000151972 seg_2608 109707900 109717600 M chrX 84498794 84521473 + 84495478 84502272 CHM 109935831 109936305 − ENSMUST00000117144 seg_2615 109934350 109936000 M other 0 0 + 0 0 OA1 = GPR143 110411861 110869443 + ENSMUST00000146539 seg_2622 110410900 110414150 M chrX 85403464 85999861 + 85402511 85405628 CHM 123984075 123984154 − CUFF.14747.1 seg_2699 123983400 123985350 M other 0 0 + 0 0 OA1 = GPR143 126284278 126577066 + CUFF.14645.2 seg_2714 126283350 126285600 M chrX 95939805 96319018 + 95938881 95941157 BTK 126284278 126577066 + CUFF.14645.2 seg_95 126283950 126284950 S chrX 95939805 96319018 + 95939522 95940514 BTK 126284278 126284832 + CUFF.14757.2 seg_2714 126283350 126285600 M chrX 95939805 95940396 + 95938881 95941157 BTK 126284278 126284832 + CUFF.14757.2 seg_95 126283950 126284950 S chrX 95939805 95940396 + 95939522 95940514 BTK 126284360 126863066 + ENSMUST00000155333 seg_2714 126283350 126285600 M chrX 95939886 96685244 + 95938881 95941157 BTK 126284360 126863066 + ENSMUST00000155333 seg_95 126283950 126284950 S chrX 95939886 96685244 + 95939522 95940514 BTK 130117402 130223532 − CUFF.14649.2 seg_2793 130215450 130229700 M chrX 99546628 99665277 − 99657327 99671435 BTK 130117402 130223532 − CUFF.14649.2 seg_96 130218250 130227050 S chrX 99546628 99665277 − 99660156 99668596 BTK 130215559 130223532 − CUFF.14760.5 seg_2793 130215450 130229700 M chrX 99657457 99665277 − 99657457 99671435 BTK 130215559 130223532 − CUFF.14760.5 seg_96 130218250 130227050 S chrX 99657457 99665277 − 99660156 99668596 BTK 130470924 130516351 − CUFF.14761.3 seg_2806 130514450 130517050 M chrX 99929475 99987138 − 99985303 99987553 BTK 130470924 130516351 − CUFF.14761.3 seg_97 130515100 130516400 S chrX 99929475 99987138 − 99985954 99987187 BTK 131004413 131009527 − ENSMUST00000131311 seg_2826 131008100 131010000 M chrX 100536586 100546314 − 100543536 100546418 BTK 131120171 131120713 + CUFF.14771.1 seg_2832 131119150 131121200 M chrX 100645947 100646543 + 100644952 100646916 BTK 131120229 131122601 + ENSMUST00000170828 seg_2832 131119150 131121200 M chrX 100646005 100650827 + 100644952 100646916 BTK 131216059 131216416 + ENSMUST00000117957 seg_2837 131214300 131216200 M other 0 0 + 0 0 OA1 = GPR143 131216059 131216416 + ENSMUST00000117957 seg_2837 131214300 131216200 M other 0 0 + 0 0 OA1 = GPR143 131223346 131231296 + CUFF.14776.2 seg_2838 131220750 131223850 M chrX 100742982 100750790 + 100740062 100743543 GLA 131282994 131285982 − CUFF.14778.2 seg_2844 131283700 131286250 M chrX 100870107 100872989 − 100870694 100873309 GLA 131291106 131295994 + CUFF.14779.1 seg_2845 131290750 131295500 M chrX 100878100 100882831 + 100877742 100882345 GLA 132277243 132332177 + CUFF.14679.2 seg_2894 132276800 132278550 M chrX 101854484 101907684 + 101853975 101855890 GLA 132277243 132336941 + CUFF.14679.1 seg_2894 132276800 132278550 M chrX 101854484 101912334 + 101853975 101855890 GLA 132330954 132331138 + CUFF.14680.1 seg_2897 132330100 132331650 M chrX 101906632 101906814 + 101905772 101907266 GLA 132331073 132331146 + CUFF.14836.1 seg_2897 132330100 132331650 M chrX 101906746 101906822 + 101905772 101907266 GLA 132673507 132674982 + CUFF.14803.1 seg_2913 132672500 132674100 M chrX 102469998 102471683 + 102469706 102470657 GLA 133243165 133246017 + CUFF.14802.2 seg_2936 133242550 133244400 M chrX 102884653 102887080 + 102883877 102885870 GLA 133535557 133572844 − CUFF.14810.7 seg_2948 133571250 133573150 M chrX 103373884 103402391 − 0 0 TBG = SERPINA7 133535594 133572841 − ENSMUST00000145842 seg_2948 133571250 133573150 M chrX 103373384 0 − 0 0 OA1 = GPR143 133549811 133572838 − ENSMUST00000148253 seg_2948 133571250 133573150 M chrX 103381078 103402391 − 0 0 TBG = SERPINA7 133566334 133572841 − ENSMUST00000132171 seg_2948 133571250 133573150 M other 0 0 + 0 0 OA1 = GPR143 133634055 133634641 + ENSMUST00000119317 seg_101 133633550 133635650 S other 0 0 + 0 0 OA1 = GPR143 133634055 133634641 + ENSMUST00000119317 seg_2950 133632500 133641950 M other 0 0 + 0 0 OA1 = GPR143 133634055 133634641 + ENSMUST00000119317 seg_101 133633550 133635650 S other 0 0 + 0 0 OA1 = GPR143 133634055 133634641 + ENSMUST00000119317 seg_2950 133632500 133641950 M other 0 0 + 0 0 OA1 = GPR143 133638428 133639261 − ENSMUST00000119238 seg_102 133638950 133640150 S other 0 0 + 48779300 48780883 OA1 = GPR143 133638428 133639261 − ENSMUST00000119238 seg_2950 133632500 133641950 M other 0 0 + 0 0 OA1 = GPR143 133638428 133639261 − ENSMUST00000119238 seg_102 133638950 133640150 S other 0 0 + 48779300 48780883 OA1 = GPR143 133638428 133639261 − ENSMUST00000119238 seg_2950 133632500 133641950 M other 0 0 + 0 0 OA1 = GPR143 133641785 133642659 + ENSMUST00000118914 seg_2950 133632500 133641950 M other 0 0 + 0 0 OA1 = GPR143 133641785 133642659 + ENSMUST00000118914 seg_2950 133632500 133641950 M other 0 0 + 0 0 OA1 = GPR143 133645879 133647421 + ENSMUST00000118843 seg_2951 133646250 133647850 M other 0 0 + 0 0 OA1 = GPR143 133645879 133647421 + ENSMUST00000118843 seg_2951 133646250 133647850 M other 0 0 + 0 0 OA1 = GPR143 133662649 133664374 + ENSMUST00000118561 seg_2953 133661400 133663150 M other 0 0 + 0 0 OA1 = GPR143 133810152 133810286 − CUFF.14819.1 seg_2959 133809900 133811050 M other 0 0 + 0 0 OA1 = GPR143 134105558 135040850 + ENSMUST00000130879 seg_104 134103900 134107150 S chrX 103811122 104731475 + 103809534 103812755 TBG = SERPINA7 134105558 135040850 + ENSMUST00000130879 seg_2967 134103350 134107500 M chrX 103811122 104731475 + 103808956 103813140 TBG = SERPINA7 134105558 135040850 + ENSMUST00000130879 seg_104 134103900 134107150 S chrX 103811122 104731475 + 103809534 103812755 TBG = SERPINA7 134105558 135040850 + ENSMUST00000130879 seg_2967 134103350 134107500 M chrX 103811122 104731475 + 103808956 103813140 TBG = SERPINA7 134966460 134966551 − CUFF.14828.1 seg_2993 134966500 134967950 M other 0 0 + 104662179 104663764 OA1 = GPR143 135448948 135545071 + CUFF.14822.1 seg_3007 135446400 135451500 M chrX 105066516 105202602 + 105063912 105069173 TBG = SERPINA7 135448948 135524317 + CUFF.14822.2 seg_3007 135446400 135451500 M chrX 105066516 105178759 + 105063912 105069173 TBG = SERPINA7 135448953 135545071 + CUFF.14710.1 seg_3007 135446400 135451500 M chrX 105066521 105202502 + 105063912 105069173 TBG = SERPINA7 135882030 135892277 − ENSMUST00000126591 seg_3021 135891400 135893050 M chrX 105625325 105639361 − 105638898 105639361 TBG = SERPINA7 135882030 135892277 − ENSMUST00000126591 seg_3021 135891400 135893050 M chrX 105625325 105639361 − 105638898 105639361 TBG = SERPINA7 135893007 135893796 + ENSMUST00000122380 seg_3021 135891400 135893050 M other 0 0 + 105638898 105639361 OA1 = GPR143 136144963 136145837 + CUFF.14831.2 seg_3030 136144350 136147100 M chrX 105969772 105970636 + 105969146 105971877 TBG = SERPINA7 136145906 136206280 + ENSMUST00000113029 seg_3030 136144350 136147100 M chrX 105970704 106038816 + 105969146 105971877 TBG = SERPINA7 136219520 136287944 + CUFF.14832.1 seg_3034 136218150 136224400 M chrX 106045891 106118691 + 106044392 106050619 PRPS1 136224009 136224144 + CUFF.14834.1 seg_3034 136218150 136224400 M other 0 0 + 106044392 106050619 OA1 = GPR143 136541344 136597251 − CUFF.14340.2 seg_107 136594950 136598150 S chrX 106366669 106449677 − 48661090 43663232 PRPS1 136541344 136597251 − CUFF.14840.2 seg_3049 136592300 136602000 M chrX 106366669 106449677 − 106445400 106454986 PRPS1 136991152 136999981 + ENSMUST00000155235 seg_3081 136989950 136993450 M chrX 106871733 106882715 + 106870757 106873713 PRPS1 136991152 136999981 + ENSMUST00000155235 seg_3081 136989950 136993450 M chrX 106871733 106882715 + 106870757 106873713 PRPS1 137074067 137077207 − ENSMUST00000112995 seg_3088 137074650 137078000 M chrX 106956451 106959745 − 106956989 106960573 PRPS1 137074067 137133980 − CUFF.14847.2 seg_109 137131450 137137100 S chrX 106956451 107019412 − 107017134 107022121 PRPS1 137074067 137133980 − CUFF.14847.2 seg_3092 137131200 137137750 M chrX 106956451 107019412 − 107016847 107022121 PRPS1 137077642 137083068 − ENSMUST00000152048 seg_3088 137074650 137078000 M chrX 106960212 106965429 − 106956989 106960573 PRPS1 137199310 137302254 + CUFF.14734.2 seg_3098 137198450 137202100 M chrX 107069159 107174866 + 107068335 107072988 PRPS1 137199472 137302254 + CUFF.14852.2 seg_3098 137198450 137202100 M chrX 107069322 107174866 + 107068335 107072988 PRPS1 137356477 137357062 − ENSMUST00000116438 seg_3111 137353950 137357900 M other 0 0 + 0 0 OA1 = GPR143 137356477 137357062 − ENSMUST00000116438 seg_3111 137353950 137357900 M other 0 0 + 0 0 OA1 = GPR143 137599946 137764377 − CUFF.14856.2 seg_3124 137598500 137600100 M chrX 107398844 107554980 − 107397620 107399000 COL4A5 137599946 137642145 − CUFF.14856.4 seg_3124 137598500 137600100 M chrX 107398844 107438474 − 107397620 107399000 COL4A5 137599946 137908628 − CUFF.14856.3 seg_3124 137598500 137600100 M chrX 107398844 107681685 − 107397620 107399000 COL4A5 137909928 138123778 + CUFF.14860.3 seg_3145 137909200 137911500 M chrX 107683031 107940825 + 107682283 107684615 COL4A5 137909928 138123778 + CUFF.14860.2 seg_3145 137909200 137911500 M chrX 107683031 107940825 + 107682283 107684615 COL4A5 137909928 138123778 + CUFF.14737.2 seg_3145 137909200 137911500 M chrX 107683031 107940825 + 107682283 107684615 COL4A5 137910111 138123778 + CUFF.14860.6 seg_3145 137909200 137911500 M chrX 107683214 107940825 + 107682283 107684615 COL4A5 138062502 138063011 + ENSMUST00000118845 seg_3158 138061650 138063400 M other 0 0 + 0 0 OA1 = GPR143 138304675 138304947 − ENSMUST00000077490 seg_3177 138304550 138305700 M other 0 0 + 0 0 OA1 = GPR143 138732108 138733073 + ENSMUST00000117081 seg_3195 138732100 138734000 M other 0 0 + 0 0 OA1 = GPR143 138732108 138733073 + ENSMUST00000117081 seg_3195 138732100 138734000 M other 0 0 + 0 0 OA1 = GPR143 138820850 138821158 − CUFF.14867.1 seg_3202 138820350 138822000 M chrX 108973213 108973350 − 108972909 108973901 COL4A5 139057035 139057445 − ENSMUST00000118547 seg_3217 139057050 139058750 M other 0 0 + 0 0 OA1 = GPR143 139057035 139057445 − ENSMUST00000118547 seg_3217 139057050 139058750 M other 0 0 + 0 0 OA1 = GPR143 139065646 139068558 − CUFF.14862.1 seg_3219 139065800 139069750 M other 0 0 + 0 0 OA1 = GPR143 139066026 139068558 − ENSMUST00000155951 seg_3219 139065800 139069750 M other 0 0 + 0 0 OA1 = GPR143 139285689 139401362 − CUFF.14750.2 seg_3235 139399350 139403250 M chrX 109437413 109561405 − 109559439 109563236 COL4A5 139285689 139401386 − CUFF.14865.1 seg_3235 139399350 139403250 M chrX 109437413 109561427 − 109559439 109563236 COL4A5 139830092 139830157 − CUFF.14869.1 seg_3254 139827450 139330300 M chrX 110040716 110040731 − 110038100 110040925 COL4A5 139953067 140232335 + CUFF.14876.1 seg_3262 139952800 139955200 M chrX 110187602 110470586 + 110187318 110189585 COL4A5 140098882 140100407 + CUFF.14876.6 seg_3267 140099200 140101150 M chrX 110339366 110340933 + 110339683 110341701 COL4A5 140853218 141122546 − ENSMUST00000148240 seg_117 141121300 141125200 S chrX 111039581 111325310 − 111324058 111328035 COL4A5 140853218 141122546 − ENSMUST00000148240 seg_3309 141119500 141127700 M chrX 111089581 111325310 − 111322217 111330457 COL4A5 140989754 140990880 − ENSMUST00000117991 seg_3304 140990450 140992200 M chrX 35820375 35821357 + 0 0 XK 141880968 141939813 − CUFF.14766.4 seg_3343 141938500 141942750 M chrX 112018106 112084182 − 112083066 112087861 COL4A5 143904918 143988678 − CUFF.14892.1 seg_3386 143988000 143989850 M chrX 114345174 114468689 − 114468015 114469855 COL4A5 143919223 143988699 − CUFF.14773.9 seg_3386 143988000 143989850 M chrX 114361317 114468712 − 114468015 114469855 COL4A5 143943353 143988678 − CUFF.14892.10 seg_3386 143988000 143989850 M chrX 114400113 114468689 − 114468015 114469855 COL4A5 147079847 147091979 − CUFF.14799.4 seg_3402 147079250 147080800 M chrX 54947223 54957868 + 54957123 54958355 ALAS2 147242402 147242529 − ENSMUST00000116932 seg_3412 147242050 147243450 M chrX 54840803 54840922 + 54839796 54841282 ALAS2 147359163 147360702 − ENSMUST00000117716 seg_3417 147358550 147360350 M other 0 0 + 0 0 OA1 = GPR143 147417684 147442281 − CUFF.14800.3 seg_3419 147442200 147443900 M chrX 54561410 54591707 + 54560615 54561460 FGD1 147481431 147502847 + CUFF.14802.3 seg_3422 147478700 147483450 M chrX 54475005 54522668 − 54520506 54525870 FGD1 147481431 147521724 + CUFF.14907.2 seg_3422 147478700 147483450 M chrX 54475005 54522668 − 54520506 54525870 FGD1 147481431 147521724 + CUFF.14802.2 seg_3422 147478700 147483450 M chrX 54475005 54522668 − 54520506 54525870 FGD1 147778718 147779728 + CUFF.14910.3 seg_3431 147779150 147780400 M chrX 54208636 54209706 − 54207956 54209262 PHF8 147955198 147991026 + CUFF.14809.2 seg_3434 147954450 147956800 M chrX 53963676 54070922 − 54069348 54071788 PHF8 147955198 148067814 + CUFF.14809.1 seg_3434 147954450 147956800 M chrX 53963676 54070908 − 54069348 54071788 PHF8 147955208 148067814 + CUFF.14914.1 seg_3434 147954450 147956800 M chrX 53963676 54070908 − 54069348 54071788 PHF8 147955471 147955656 − CUFF.14808.1 seg_3434 147954450 147956800 M chrX 54070443 54070616 + 54069348 54071788 PHF8 148089731 148090645 + ENSMUST00000121650 seg_3440 148088650 148090350 M other 0 0 + 0 0 OA1 = GPR143 148089731 148090645 + ENSMUST00000121650 seg_3440 148088650 148090350 M other 0 0 + 0 0 OA1 = GPR143 148235350 148352209 + CUFF.14830.1 seg_3449 148351400 148352950 M chrX 53577614 53713695 − 53576440 53578410 MRX1 = IQSEC2 148436388 148438986 + CUFF.14916.3 seg_3452 148436000 148437150 M chrX 53458207 53461346 − 53460581 53461739 MRX1 = IQSEC2 148444127 148450813 − ENSMUST00000133517 seg_3453 148448100 148452250 M chrX 53449811 53453282 + 53448362 53451724 MRX1 = IQSEC2 148444127 148450813 − ENSMUST00000133517 seg_3453 148448100 148452250 M chrX 53449811 53453282 + 53448362 53451724 MRX1 = IQSEC2 148450971 148470755 + ENSMUST00000145518 seg_3453 148448100 148452250 M chrX 53405849 53449660 − 53448362 53451724 MRX1 = IQSEC2 148450971 148497237 + CUFF.14814.3 seg_3453 148448100 148452250 M chrX 53405849 53449660 − 53448362 53451724 MRX1 = IQSEC2 148451529 148451804 + CUFF.14921.1 seg_3453 148448100 148452250 M chrX 53448837 53449093 − 53448362 53451724 MRX1 = IQSEC2 148477431 148478058 − CUFF.14920.1 seg_3455 148476800 148478500 M other 0 0 + 0 0 OA1 = GPR143 148477592 148478055 − ENSMUST00000120888 seg_3455 148476800 148478500 M other 0 0 + 0 0 OA1 = GPR143 148477592 148478055 − ENSMUST00000120888 seg_3455 148476800 148478500 M other 0 0 + 0 0 OA1 = GPR143 148578768 148639178 + CUFF.14816.1 seg_119 148578700 148580800 S chrX 53283545 53350548 − 53348417 53350616 MRX1 = IQSEC2 148578768 148639178 + CUFF.14816.1 seg_3460 148578400 148581050 M chrX 53283545 53350548 − 53348024 53350934 MRX1 = IQSEC2 148771395 148776968 − ENSMUST00000138918 seg_3470 148775450 148777250 M chrX 53111515 53117727 + 53111285 53113158 MRX1 = IQSEC2 148771395 148777019 − CUFF.14927.4 seg_3470 148775450 148777250 M chrX 53111515 53117727 + 53111285 53113158 MRX1 = IQSEC2 148771395 148777019 − CUFF.14927.3 seg_3470 148775450 148777250 M chrX 53111515 53117727 + 53111285 53113158 MRX1 = IQSEC2 148978796 148979698 − ENSMUST00000120079 seg_3479 148977250 148978900 M other 0 0 + 0 0 OA1 = GPR143 149044052 149204222 − CUFF.14826.2 seg_3484 149203250 149205000 M chrX 9754409 9917528 + 9753597 9755295 OA1 = GPR143 149057511 149204219 − CUFF.14936.7 seg_3484 149203250 149205000 M chrX 9754412 9901148 + 9753597 9755295 OA1 = GPR143 149441009 149444230 + CUFF.14939.1 seg_3497 149440700 149441900 M chrX 55513030 55516285 − 55515320 55516529 ALAS2 149655713 149655986 + ENSMUST00000119867 seg_3510 149655250 149657200 M other 0 0 + 0 0 OA1 = GPR143 149794275 149830825 + CUFF.14942.5 seg_3517 149794050 149795950 M chrX 56259009 56314850 + 56258774 56260707 ALAS2 150266767 150268786 + CUFF.14947.1 seg_3533 150266350 150268050 M chrX 57095072 57097138 − 57095795 57097544 ALAS2 151696962 151731456 + CUFF.14845.1 seg_3550 151696250 151698050 M chrX 23722764 23761432 − 23760757 23761726 SAT = SAT1 151696978 151697427 + CUFF.14962.1 seg_3550 151696250 151698050 M chrX 23761017 23761415 − 23760757 23761726 SAT = SAT1 151696986 151698125 + ENSMUST00000134662 seg_3550 151696250 151698050 M chrX 23760757 23761407 − 23760757 23761726 SAT = SAT1 151738742 151740292 − ENSMUST00000144428 seg_3551 151740100 151741400 M other 0 0 + 0 0 OA1 = GPR143 153915277 153915525 − CUFF.14971.1 seg_3603 153914450 153916200 M chrX 21975056 21975269 + 21974127 21976977 PHEX 154588028 154589111 + ENSMUST00000120024 seg_3616 154587400 154588700 M other 0 0 + 0 0 OA1 = GPR143 154588028 154589111 + ENSMUST00000120024 seg_3616 154587400 154588700 M other 0 0 + 0 0 OA1 = GPR143 155693729 155693827 − CUFF.14862.1 seg_3654 155693500 155698350 M other 0 0 + 20280720 20285259 OA1 = GPR143 155834188 155924555 + CUFF.14861.1 seg_3658 155833950 155835450 M chrX 20039469 20137382 − 0 0 PHKA2 155848179 155848442 − ENSMUST00000122329 seg_3659 155847650 155849300 M other 0 0 + 0 0 OA1 = GPR143 155848232 155848371 + CUFF.14983.1 seg_3659 155847650 155849300 M other 0 0 + 0 0 OA1 = GPR143 155964620 155998280 + CUFF.14989.2 seg_3664 155964400 155968450 M chrX 19968429 20009740 − 0 0 PHKA2 155970597 156031013 + CUFF.14989.3 seg_3665 155970350 155971650 M chrX 19934359 20009176 − 20008178 20009479 PHKA2 155970597 156031013 + CUFF.14989.3 seg_3666 156030450 156031650 M chrX 19934359 20009176 − 19933931 19934963 PHKA2 156065166 156416001 + CUFF.14994.1 seg_3667 156065150 156067100 M chrX 19550319 19905867 − 19903899 19905883 PHKA2 156380844 156412099 + ENSMUST00000142426 seg_3681 156410850 156413050 M chrX 19553529 19587588 − 19552603 19554763 PHKA2 157027663 157036207 + CUFF.15003.1 seg_3707 157034600 157036250 M chrX 18907129 18912800 − 18906778 18908445 PHKA2 157241673 157241983 − CUFF.15005.1 seg_3718 157241500 157242700 M chrX 18651084 18651384 + 18650361 18651566 RS1 157246270 157432634 − CUFF.15001.3 seg_3729 157431550 157434400 M chrX 18443703 18646844 + 18441881 18444760 CDKL5 157573079 157573160 + CUFF.14875.1 seg_3735 157571600 157573100 M other 0 0 + 0 0 OA1 = GPR143 158346155 158346709 + ENSMUST00000154188 seg_134 158346050 158347950 S chrX 17673951 17674501 − 17672667 17674599 CC = NHS 158346155 158346709 + ENSMUST00000154188 seg_3781 158344900 158348950 M chrX 17673951 17674501 − 17671634 17675750 CC = NHS 158346155 158346709 + ENSMUST00000154188 seg_134 158346050 158347950 S chrX 17673951 17674501 − 17672667 17674599 CC = NHS 158346155 158346709 + ENSMUST00000154188 seg_3781 158344900 158348950 M chrX 17673951 17674501 − 17671634 17675750 CC = NHS 158789528 158791808 + ENSMUST00000119454 seg_3809 158789950 158792150 M other 0 0 + 0 0 OA1 = GPR143 158789528 158791808 + ENSMUST00000119454 seg_3809 158789950 158792150 M other 0 0 + 0 0 OA1 = GPR143 159294918 159326390 − CUFF.15022.1 seg_3824 159325300 159326500 M chrX 16737682 16754364 + 16737654 16738513 CC = NHS 160198169 160198915 − ENSMUST00000119583 seg_137 160197550 160199400 S other 0 0 + 0 0 OA1 = GPR143 160198169 160198915 − ENSMUST00000119583 seg_3857 160194600 160201150 M other 0 0 + 0 0 OA1 = GPR143 160198169 160198915 − ENSMUST00000119583 seg_137 160197550 160199400 S other 0 0 + 0 0 OA1 = GPR143 160198169 160198915 − ENSMUST00000119583 seg_3857 160194600 160201150 M other 0 0 + 0 0 OA1 = GPR143 160346915 160347226 + CUFF.15036.1 seg_138 160345550 160347000 S chrX 15872785 15873088 − 15873004 15874466 PIGA 160346915 160347226 + CUFF.15036.1 seg_3862 160345250 160347350 M chrX 15872785 15873088 − 15872655 15874788 PIGA 160346922 160367478 + CUFF.14888.1 seg_138 160345550 160347000 S chrX 15848182 15873081 − 15873004 15874466 PIGA 160346922 160367478 + CUFF.14888.1 seg_3862 160345250 160347350 M chrX 15848182 15873081 − 15872655 15874788 PIGA 160391523 160396094 − ENSMUST00000139166 seg_3865 160394650 160396700 M chrX 15808883 15822299 + 15808199 15811430 PIGA 161381302 161418307 − CUFF.15049.4 seg_3910 161380050 161381550 M chrX 14891501 14934512 + 14934264 14935279 PIGA 162827965 162878637 − CUFF.15054.2 seg_3948 162877500 162879500 M chrX 13752890 13788174 + 13750751 13753578 OFD1 162948132 162948265 + CUFF.14908.1 seg_3951 162946950 162949350 M chrX 13671391 13671542 − 13670689 13672284 SEDL = TRAPPC2 163292134 163292985 + ENSMUST00000087025 seg_3964 163290550 163292150 M other 0 0 + 13351903 13352110 OA1 = GPR143 163292134 163292985 + ENSMUST00000087025 seg_3964 163290550 163292150 M other 0 0 + 13351903 13352110 OA1 = GPR143 163292143 163292943 + ENSMUST00000118791 seg_3964 163290550 163292150 M other 0 0 + 13351903 13352110 OA1 = GPR143 163292143 163292943 + ENSMUST00000118791 seg_3964 163290550 163292150 M other 0 0 + 13351903 13352110 OA1 = GPR143 163784254 163820681 − CUFF.15069.2 seg_3980 163818250 163825700 M chrX 12809471 12837836 + 12804546 12811334 SEDL = TRAPPC2 163790030 163820681 − CUFF.15069.3 seg_3980 163818250 163825700 M chrX 12809471 12837836 + 12804546 12811334 SEDL = TRAPPC2 163810341 163820642 − ENSMUST00000145456 seg_3979 163810250 163812250 M chrX 12809525 12818878 + 12817304 12818971 SEDL = TRAPPC2 163810341 163820642 − ENSMUST00000145456 seg_3980 163818250 163825700 M chrX 12809525 12818878 + 12804546 12811334 SEDL = TRAPPC2 164214193 164215488 + CUFF.14919.1 seg_3997 164214300 164216150 M other 0 0 + 0 0 OA1 = GPR143 164214193 164215488 + ENSMUST00000119938 seg_3997 164214300 164216150 M other 0 0 + 0 0 OA1 = GPR143

To obtain human paralogues, the mouse lncRNAs were lifted over (using uesc batch liftOver software genome.ucsc.edu/cgi-bin/hgLiftOver) to the February 2009 (CRCh37/hg19) human genome assembly.

Tables VIII and IX set forth the SEQ ID NOs. for the mouse and human lncRNAs from Table VII. Coordinates are in reference to genome assembly mm9 and hg19, respectively.

TABLE VIII lncRNAs for Mouse Ezh2 binding sites SEQ ID Start Finish Strand Disease Gene Mod/Strong NO: 100355529 100360903 − OA1 = GPR143 moderate 227 100358233 100360766 − OA1 = GPR143 moderate 228 100358233 100360766 − OA1 = GPR143 moderate 229 100358449 100360746 − OA1 = GPR143 moderate 230 10062235 10173613 + OTC moderate 231 10062248 10173731 + OTC moderate 232 100724822 100725046 + OA1 = GPR143 moderate 233 100891328 100891361 + ABCB7 moderate 234 101396608 101396824 − ABCB7 moderate 235 101941821 101942111 + OA1 = CPR143 moderate 236 101941821 101942111 + OA1 = CPR143 moderate 237 102143124 102143621 + OA1 = CPR143 moderate 238 102143124 102143621 + OA1 = CPR143 moderate 239 102227925 102228705 + OA1 = CPR143 moderate 240 102227925 102228705 + OA1 = CPR143 moderate 241 10284302 10295947 − OTC moderate 242 10284302 10295947 − OTC strong 243 102920467 102920853 − OA1 = CPR143 moderate 244 102920467 102920853 − OA1 = CPR143 moderate 245 103555795 103579410 − PGK1 moderate 246 103828136 103828642 − OA1 = CPR143 moderate 247 106030003 106034841 + PGK1 moderate 248 106030003 106034841 + PGK1 moderate 249 106196824 106197635 + OA1 = CPR143 moderate 250 106196824 106197635 + OA1 = CPR143 moderate 251 109008832 109008863 − OA1 = CPR143 moderate 252 109714135 109739682 + CHM moderate 253 109935831 109936305 − OA1 = CPR143 moderate 254 11241367 11241392 − OTC moderate 255 11421805 11421826 − OA1 = CPR143 moderate 256 11490217 11490415 − OTC moderate 257 11490217 11490415 − OTC moderate 258 12339404 12398618 + CSNB1 = NYX strong 259 12339404 12398618 + CSNB1 = NYX moderate 260 123984075 123984154 − OA1 = CPR143 moderate 261 12513998 12515254 + OA1 = CPR143 moderate 262 12513998 12515254 + OA1 = CPR143 moderate 263 126284278 126284832 + BTK moderate 264 126284278 126284832 + BTK strong 265 126284278 126577066 + BTK moderate 266 126284278 126577066 + BTK strong 267 12648548 12650070 + CSNB1 = NYX moderate 268 12658599 12738071 + CSNB1 = NYX moderate 269 12658599 12743898 + CSNB1 = NYX moderate 270 12658599 12768156 + CSNB1 = NYX moderate 271 131120171 131120713 + BTK moderate 272 131216059 131216416 + OA1 = CPR143 moderate 273 131216059 131216416 + OA1 = CPR143 moderate 274 131291106 131295994 + GLA moderate 275 132277243 132332177 + GLA moderate 276 132277243 132336941 + GLA moderate 277 132673507 132674982 + GLA moderate 278 133634055 133634641 + OA1 = CPR143 strong 279 133634055 133634641 + OA1 = CPR143 moderate 280 133634055 133634641 + OA1 = CPR143 strong 281 133634055 133634641 + OA1 = CPR143 moderate 282 133638428 133639261 − OA1 = CPR143 strong 283 133633428 133639261 − OA1 = CPR143 moderate 284 133638428 133639261 − OA1 = CPR143 strong 285 133638428 133639261 − OA1 = CPR143 moderate 286 133641785 133642659 + OA1 = CPR143 moderate 287 133641785 133642659 + OA1 = CPR143 moderate 288 133645879 133647421 + OA1 = CPR143 moderate 289 133645879 133647421 + OA1 = CPR143 moderate 290 133662649 133664374 + OA1 = CPR143 moderate 291 133810152 133810286 − OA1 = CPR143 moderate 292 134966460 134966551 − OA1 = CPR143 moderate 293 135448948 135524317 + TBG = SERPINA7 moderate 294 135448948 135545071 + TBG = SERPINA7 moderate 295 135448953 135545071 + TBG = SERPINA7 moderate 296 135882030 135892277 − TBG = SERPINA7 moderate 297 135882030 135892277 − TBG = SERPINA7 moderate 298 135893007 135893796 + OA1 = CPR143 moderate 299 136219520 136287944 + PRPS1 moderate 300 136991152 136999981 + PRPS1 moderate 301 136991152 136999981 + PRPS1 moderate 302 137074067 137077207 − PRPS1 moderate 303 137356477 137357062 − OA1 = GPR143 moderate 304 137356477 137357062 − OA1 = GPR143 moderate 305 137599946 137642145 − COL4A5 moderate 306 137599946 137764377 − COL4A5 moderate 307 138304675 138304947 − OA1 = GPR143 moderate 308 138732108 138733073 + OA1 = GPR143 moderate 309 138732108 138733073 + OA1 = GPR143 moderate 310 139057035 139057445 − OA1 = GPP143 moderate 311 139057035 139057445 − OA1 = CPR143 moderate 312 139065646 139068558 − OA1 = CPR143 moderate 313 139066026 139068558 − OA1 = GPR143 moderate 314 139830092 139830157 − COL4A5 moderate 315 139953067 140232335 + COL4A5 moderate 316 147359163 147360702 − OA1 = CPR143 moderate 317 147417684 147442281 − FGD1 moderate 318 147778718 147779728 + PHF8 moderate 319 147955198 147991026 + PHF8 moderate 320 147955198 148067814 + PHF8 moderate 321 147955208 148067814 + PHF8 moderate 322 147955471 147955656 − PHF8 moderate 323 148089731 148090645 + OA1 = GPR143 moderate 324 148089731 148090645 + OA1 = GPP143 moderate 325 148235350 148352209 + MRX1 = IQSEC2 moderate 326 148450971 148470755 + MRX1 = IQSEC2 moderate 327 148450971 148497237 + MRX1 = IQSEC2 moderate 328 148477431 148478058 − OA1 = GFR143 moderate 329 148477592 148478055 − OA1 = GPR143 moderate 330 148477592 148478055 − OA1 = GPR143 moderate 331 148578768 148639178 + MRX1 = IQSEC2 strong 332 148573768 148639178 + MRX1 = IQSEC2 moderate 333 148771395 148776968 − MRX1 = IQSEC2 moderate 334 148771395 148777019 − MRX1 = IQSEC2 moderate 335 148771395 148777019 − MRX1 = IQSEC2 moderate 336 148978796 148979698 − OA1 = GPR143 moderate 337 149441009 149444230 + ALAS2 moderate 338 149655713 149655986 + OA1 = GPR143 moderate 339 150266767 150268786 + ALAS2 moderate 340 151696962 151731456 + SAT = SAT1 moderate 341 151696978 151697427 + SAT = SAT1 moderate 342 151696986 151658125 + SAT = SAT1 moderate 343 151738742 151740292 − OA1 = GPR143 moderate 344 154588028 154589111 + OA1 = GPP143 moderate 345 154588028 154589111 + OA1 = GPR143 moderate 346 155693729 155693827 − OA1 = GPR143 moderate 347 155834188 155924555 + PHKA2 moderate 348 155848179 155848442 − OA1 = GPR143 moderate 349 155843232 155848371 + OA1 = GPR143 moderate 350 156065166 156416001 + PHKA2 moderate 351 158346155 158346705 + CC = NHS strong 352 158346155 158346709 + CC = NHS moderate 353 158346155 159346709 + CC = NHS strong 354 158346155 158346709 + CC = NHS moderate 355 158789528 158791808 + GA1 = CPR143 moderate 356 158739528 158791808 + OA1 = GPR143 moderate 357 159294918 159326390 − CC = NHS moderate 358 160198169 160198915 − OA1 = GPR143 strong 359 160198169 160198915 − OA1 = GPR143 moderate 360 160159169 160198915 − OA1 = GPR143 strong 361 160198169 160198915 − OA1 = GPR143 moderate 362 160346915 160347226 + PIGA strong 363 160346915 160347226 + PIGA moderate 364 160346922 160367478 + PIGA strong 365 160346922 160367478 + PICA moderate 366 16195654 16195958 + NDP moderate 367 16196824 16254723 + NDP moderate 368 162948132 162948265 + SEDL = TRAPPC2 moderate 369 163292134 163292985 + OA1 = GPR143 moderate 370 163292134 163292985 + OA1 = GPR143 moderate 371 163292143 163292943 + OA1 = GPR143 moderate 372 163292143 163292943 + OA1 = GPR143 moderate 373 163784254 163820681 − SEDL = TRAPPC2 moderate 374 164214193 164215488 + OA1 = GPR143 moderate 375 164214193 164215488 + OA1 = GPR143 moderate 376 19636666 19638395 + UBA1 strong 377 19636666 19638395 + UBA1 moderate 378 19636666 19674647 + UBA1 strong 379 13636666 19674647 + UBA1 moderate 380 20002814 20003061 + UBA1 moderate 381 20194399 20225033 + UBA1 strong 382 20194399 20225033 + UBA1 moderate 383 20281032 20294944 + UBA1 moderate 384 20539240 20563863 + OA1 = GPR143 moderate 385 20937991 20941748 + OA1 = GPR143 moderate 386 20938066 20940148 + OA1 = GPR143 moderate 387 20938066 20940148 + OA1 = GPR143 moderate 388 33428645 33616557 + COL4A5 moderate 389 33428660 33523834 + COL4A5 moderate 390 33428660 33616557 + COL4A5 moderate 391 33868348 33882606 + COL4A5 strong 392 33868348 33882606 + COL4A5 moderate 393 34138199 34138634 + OCRL moderate 394 34190337 34208188 − OCRL moderate 395 34208212 34209008 + OA1 = GPR143 moderate 396 34208212 34209008 + OA1 = GPR143 moderate 397 34354766 34357180 − OCRL moderate 398 34354766 34357180 − OCRL moderate 399 34414316 34414834 + OCRL moderate 400 34414316 34415329 + OCRL moderate 401 34414323 34414681 + OCRL moderate 402 34442912 34442959 + OCRL moderate 403 34443059 34443464 − OCRL moderate 404 34443156 34443320 − OCRL moderate 405 35180050 35183034 + OA1 = GPR143 moderate 406 35180050 35183034 + OA1 = GFR143 moderate 407 35533905 35534803 + OA1 = GPR143 strong 408 35533905 35534803 + OA1 = GPR143 moderate 409 35533905 35534803 + OA1 = GPR143 strong 410 35533905 35534803 + OA1 = GPR143 moderate 411 35542915 35550223 + OCRL moderate 412 35542935 35550223 + OCRL moderate 413 38754031 38966276 + OCRL strong 414 38754031 38966276 + OCRL moderate 415 40677132 40782180 − OCRL strong 416 40677132 40782180 − OCRL moderate 417 40677132 40782180 − OCRL strong 418 40677132 40782180 − OCRL moderate 419 45363158 45363341 + OA1 = GPR143 moderate 420 45363178 45363342 + OA1 = GPR143 moderate 421 45694175 45694423 − OCRL strong 422 45694175 45694423 − OCRL moderate 423 45694535 45755264 + OCRL strong 424 45694535 45755264 + OCRL moderate 425 45976590 46015471 + OCRL moderate 426 47726321 47727201 + OA1 = GPR143 moderate 427 47726321 47727201 + OA1 = GPP143 moderate 428 47908921 47988433 − OA1 = GPR143 moderate 429 47930580 47930887 − OA1 = GPR143 moderate 430 47948607 47988499 − NYS1 = FRMD7 moderate 431 47968572 47988498 − NYS1 = FRMD7 moderate 432 47983977 47988499 − NYS1 = FRMD7 moderate 433 48371324 48371616 − NYS1 = FRMD7 moderate 434 48371476 48371850 + NYS1 = FRMD7 moderate 435 49106697 49154410 − NYS1 = FRMD7 moderate 436 49404740 49405157 − HPRT1 = HPRT moderate 437 49405289 49405837 − HPRT1 = HPRT moderate 438 50095234 50098237 − HPRT1 = HPRT moderate 439 50095740 50097770 − HPRT1 = HPRT moderate 440 50095740 50097770 − HPRT1 = HPRT moderate 441 50095740 50097770 − HPRT1 = HPRT moderate 442 50095740 50097770 − HPRT1 = HPRT moderate 443 50095740 50097770 − HPRT1 = HPRT moderate 444 50265421 50310120 + HPRT1 = HPRT moderate 445 50341229 50374836 + HPRT1 = HPRT moderate 446 50341250 50341769 + HPRT1 = HPRT moderate 447 50407432 50407526 − HPRT1 = HPRT moderate 448 50408223 50410367 − HPRT1 = HPRT moderate 449 50408223 50410367 − HPRT1 = HPRT strong 450 50408947 50410413 − HPRT1 = HPRT moderate 451 50408947 50410413 − HPRT1 = HPRT strong 452 50409370 50410367 − HPRT1 = HPRT moderate 453 50409370 50410367 − HPRT1 = HPRT strong 454 50409370 50410367 − HPRT1 = HPRT moderate 455 50409370 50410367 − HPRT1 = HPRT strong 456 51076013 51076305 + GA1 = GPR143 moderate 457 51272614 51278177 − OA1 = GPR143 moderate 458 51272614 51278177 − OA1 = GPR143 strong 459 53599576 53618851 + HPRT1 = HPRT moderate 460 53984857 54043843 + HPRT1 = HPRT moderate 461 53984936 54043843 + HPRT1 = HPRT moderate 462 54484662 54494066 − HPRT1 = HPRT moderate 463 54989724 54991732 − OA1 = GPR143 moderate 464 55175146 55175209 + F9 moderate 465 55175146 55175209 + F9 strong 466 55291586 55291918 − HPRT1 = HPRT moderate 467 57657230 57657464 + F9 moderate 468 57657681 57657808 + F9 moderate 469 57801194 57802024 + F9 moderate 470 57801194 57802024 + F9 moderate 471 58146828 58151242 + F9 moderate 472 58146828 58151242 + F9 strong 473 6356106 6474704 + CLCN5 strong 474 6356106 6474704 + CLCN5 moderate 475 65920689 65931574 − FMR1 moderate 476 65931716 65951510 + FMR1 moderate 477 65931716 65970681 + FMR1 moderate 478 65931716 65970681 + FMR1 moderate 479 66858632 66859428 − OA1 = GPR143 moderate 480 66858632 66859428 − OA1 = GPR143 moderate 481 66858671 66859420 − OA1 = GPR143 moderate 482 67712928 67730355 − MTM1 moderate 483 68291015 68303292 − MTM1 moderate 484 68291015 68303292 − MTM1 strong 485 68809081 68812693 + MTM1 moderate 486 68809092 68812471 + HPRT1 = HPRT moderate 487 6948402 6952952 − CLCN5 moderate 488 6953051 6955168 + CLCN5 moderate 489 70232678 70261234 + ABCD1 moderate 490 70748725 70748751 − ABCD1 moderate 491 70884707 70887453 + ABCD1 moderate 492 70884707 70887453 + ABCD1 strong 493 70918489 70919425 + ABCD1 moderate 494 71038698 71070106 − L1CAM moderate 495 71212129 71212322 − AVPR2 moderate 496 71252041 71252841 + OA1 = GPR143 moderate 497 71252041 71252841 + OA1 = GPR143 moderate 498 71500026 71500436 + EMD moderate 499 71527251 71528204 + EMD moderate 500 71527251 71528254 + EMD moderate 501 71527980 71535490 + EMD moderate 502 71550319 71553622 + OA1 = GPR143 moderate 503 71550319 71557201 + MTM1 moderate 504 71550337 71553623 + EMD moderate 505 71574384 71590028 + IKBKG moderate 506 71574384 71597045 + IKBKG moderate 507 71574404 71588866 + IKBKG moderate 508 72388763 72388969 + OA1 = GPR143 moderate 509 72388763 72388969 + OA1 = GPR143 moderate 510 72389027 72389809 + OA1 = GPR143 moderate 511 72389027 72389809 + OA1 = GPR143 moderate 512 72759615 72762429 + F8 moderate 513 7329256 7329540 + COL4A5 moderate 514 7329256 7329540 + COL4A5 moderate 515 7418487 7449418 + PQBP1 moderate 516 7418957 7449384 + PQBP1 moderate 517 7476440 7483890 + PQBP1 moderate 518 7476463 7497358 + PQBP1 moderate 519 7476463 7497358 + PQBP1 moderate 520 7476501 7476531 − PQBP1 moderate 521 7527282 7527994 − OA1 = GPR143 moderate 522 7624355 7624525 + OA1 = GPR143 moderate 523 7624355 7624525 + OA1 = GPR143 moderate 524 7682420 7683239 + OA1 = GPR143 moderate 525 7682420 7683239 + OA1 = GPR143 moderate 526 7770971 7783651 − WAS moderate 527 7770971 7783651 − WAS moderate 528 78316009 78316663 + XK moderate 529 78316009 78343211 + XK moderate 530 78316009 78343211 + XK moderate 531 78316037 78340115 + XK moderate 532 82819228 82867039 + DAX1 = NR0B1 moderate 533 82819228 82879808 + DAX1 = NR0B1 moderate 534 82961777 82962362 + OA1 = GPR143 moderate 535 82961777 82962362 + OA1 = GPR143 moderate 536 83561422 83564035 + OA1 = GPR143 moderate 537 83561422 83564035 + OA1 = GPR143 moderate 538 83590162 83591184 − DAX1 = NR0B1 moderate 539 83658987 83659063 − OA1 = GPR143 moderate 540 8776971 8792653 + XK moderate 541 8903530 8904209 − OA1 = GPR143 moderate 542 8904262 8904575 − OA1 = GPR143 moderate 543 91077474 91077950 + SAT = SAT1 moderate 544 91792302 91792908 − OA1 = GPR143 moderate 545 91792302 91792908 − OA1 = GPR143 moderate 546 91881387 91888583 + CLCN5 moderate 547 91881387 91888583 + CLCN5 strong 548 91916842 91918459 − OA1 = GPR143 moderate 549 91916842 91918459 − OA1 = GPR143 moderate 550 92017958 92019373 − OA1 = GPR143 moderate 551 92017958 92019373 − OA1 = GPR143 moderate 552 92020317 92021016 − OA1 = GPR143 moderate 553 92020317 92021016 − OA1 = GPR143 moderate 554 92035056 92035685 + OA1 = GPR143 moderate 555 92035056 92035685 + OA1 = GPR143 moderate 556 92038442 92043576 + ALAS2 moderate 557 92907017 93120097 + OA1 = GFR143 moderate 558 92907017 93120097 + OA1 = GPR143 moderate 559 93291330 93363894 + AR moderate 560 93291330 93363894 + AR moderate 561 96331411 96344330 + ED1 = EDA moderate 562 96331411 96344330 + ED1 = EDA moderate 563 96509316 96509440 + ED1 = EDA moderate 564 96600670 96639136 − ED1 = EDA moderate 565 96600670 96639136 − ED1 = EDA strong 566 96600670 96639136 − ED1 = EDA moderate 567 96600670 36639136 − ED1 = EDA strong 568 97015446 97015868 + ED1 = EDA moderate 569 97015934 97016205 − ED1 = EDA moderate 570 97016120 97016273 + ED1 = EDA moderate 571 97170822 97506638 + ED1 = EDA moderate 572 97170822 97596101 + ED1 = EDA moderate 573 97170904 97596101 + ED1 = EDA moderate 574 97170904 97596101 + ED1 = EDA strong 575 97925212 97927787 + GJB1 moderate 576 97925212 97927787 + GJB1 moderate 577 97962972 97972554 − GJB1 moderate 578 97962972 97982921 − GJB1 moderate 579 97968278 97968379 − GJB1 moderate 580 98254349 98254631 + OA1 = GPR143 moderate 581 98449812 98456212 + GJB1 moderate 582 98835383 98849934 + GJB1 moderate 583 98835383 98849934 + GJB1 strong 584 98835399 98849983 + GJB1 moderate 585 98835399 98849983 + GJB1 strong 586 98986564 98988647 − GJB1 moderate 587 98986564 98988647 − GJB1 moderate 588 99044721 99287394 + GJB1 moderate 589 99044721 99287394 + GJB1 moderate 590 99044721 99287394 + GJB1 strong 591 99044724 99144974 + GJB1 moderate 592 99044724 99144974 + GJB1 strong 593 157246270 157432634 − CDKL5 moderate 594 137074067 137133980 − PRPS1 strong 595 137074067 137133980 − PRPS1 moderate 596 55283804 55294913 + F9 moderate 597 55283804 55294913 + F9 moderate 598 55283804 55294913 + F9 strong 599 137199310 137302254 + PRPS1 moderate 600 137199472 137302254 + PRPS1 moderate 601 47148122 47150912 − NYS1 = FRMD7 moderate 602 157027663 157036207 + PHKA2 moderate 603 55283804 55286873 + F9 moderate 604 55283804 55286873 + F9 strong 605 155970597 156031013 + PHKA2 moderate 606 155970597 156031013 + PHKA2 moderate 607 91881415 91888583 + CLCN5 moderate 608 91881415 91888583 + CLCN5 strong 609 11613866 11737559 − CSNB1 = NYX strong 610 11613866 11737559 − CSNB1 = NYX moderate 611 47135713 47150926 − NYS1 = FRMD7 moderate 612 57377877 57431535 − F9 moderate 613 12256875 12339199 − CSNB1 = NYX strong 614 12256875 12339199 − CSNB1 = NYX moderate 615 11613866 11705532 − CSNB1 = NYX strong 616 11613866 11705532 − CSNB1 = NYX moderate 617 143904918 143988678 − COL4A5 moderate 618 53863012 53908257 + HPRT1 = HPR7 moderate 619 57309131 57432445 − F9 moderate 620 96132695 96144356 + AR moderate 621 96132488 96144356 + AR moderate 622 40250312 40782303 − OCRL strong 623 40250312 40782303 − OCRL moderate 624 96237920 96270067 + ED1 = EDA moderate 625 10292145 10296816 + OTC moderate 626 131282994 131285982 − GLA moderate 627 155964620 155998280 + PHKA2 moderate 628 40177535 40782180 − OCRL strong 629 40177535 40782180 − OCRL moderate 630 7367144 7397082 + PQBP1 moderate 631 7367144 7397082 + PQBP1 moderate 632 7770974 7787507 − WAS moderate 633 7770974 7787507 − WAS moderate 634 147079847 147091979 − ALAS2 moderate 635 96133100 96140245 + AR moderate 636 96237920 96265783 + ED1 = EDA moderate 637 7134422 7154618 − PQBP1 moderate 638 45806529 45807451 − OCRL strong 639 45806529 45807451 − OCRL moderate 640 12338584 12339240 − CSNB1 = NYX strong 641 12338584 12339240 − CSNB1 = NYX moderate 642 45764223 45810380 − OCRL moderate 643 7476797 7483890 + PQBP1 moderate 644 48368108 48371354 − NYS1 = FRMD7 moderate 645 137077642 137083063 − PRPS1 moderate 646 156380844 156412099 + PHKA2 moderate 647 71598672 71598963 − IKBKG moderate 648 71598672 71598963 − IKBKG strong 649 34427535 34443093 − OCRL moderate 650 5976972 6214566 + CLCN5 moderate 651 71188131 71212039 − AVPR2 moderate 652 7419731 7452410 + PQBP1 moderate 653 7419731 7452410 + PQBP1 moderate 654 91784323 91787522 − MRX1 = IQSEC2 moderate 655 9178432 91787522 − MRX1 = IQSEC2 moderate 656 101162901 101176626 − ABCB7 moderate 657 101162901 101176626 − ABCB7 strong 658 101272773 101396532 − ABCB7 moderate 659 101272773 101396549 − ABCB7 moderate 660 103106842 103124685 − ATRX moderate 661 11623972 11657682 − CSNB1 = NYX strong 662 11623972 11657682 − CSNB1 = NYX moderate 663 11625208 11657693 − CSNB1 = NYX strong 664 11625208 11657693 − CSNB1 = NYX moderate 665 12254777 12339238 − CSNB1 = NYX strong 666 12254777 12339238 − CSNB1 = NYX moderate 667 130215559 130223532 − BTK moderate 668 130215559 130223532 − BTK strong 669 130470924 130516351 − BTK moderate 670 130470924 130516351 − BTK strong 671 13094206 13423886 − CSNB1 = NYX moderate 672 131120229 131122601 + BTK moderate 673 13129411 13423886 − CSNB1 = NYX moderate 674 13131747 13423893 − CSNB1 = NYX moderate 675 133535557 133572844 − TBG = SERPINA7 moderate 676 133535594 133572841 − OA1 = GPR143 moderate 677 133549811 133572838 − TBG = SERPINA7 moderate 678 133566334 133572841 − OA1 = GPR143 moderate 679 136541344 136597251 − PRPS1 strong 680 136541344 136597251 − PRPS1 moderate 681 137599946 137908628 − COL4A5 moderate 682 137909928 138123778 + COL4A5 moderate 683 137909928 138123778 + COL4A5 moderate 684 137909929 138123778 + COL4A5 moderate 685 137910111 138123773 + COL4A5 moderate 686 139285689 139401362 − COL4A5 moderate 687 139285689 139401386 − COL4A5 moderate 688 141880968 141939813 − COL4A5 moderate 689 143919223 143988699 − COL4A5 moderate 690 143943353 143988678 − COL4A5 moderate 691 148436388 148438986 + MPX1 = IQSEC2 moderate 692 149044052 149204222 − OA1 = GPR143 moderate 693 149057511 149204219 − OA1 = GPR143 moderate 694 149794275 149830825 + ALAS2 moderate 695 161381302 161418307 − PIGA moderate 696 162827965 162878637 − OFD1 moderate 697 19772151 19868953 − UBA1 moderate 698 20194629 20228027 + UBA1 strong 699 20194629 20228027 + UBA1 moderate 700 33735899 33739153 + COL4A5 moderate 701 34148309 34185415 − OCRL moderate 702 34148309 34185417 − OCRL moderate 703 34391130 34404168 − OCRL moderate 704 34631673 34650335 − OCRL moderate 705 34648901 34650347 − OCRL moderate 706 38754659 39031778 + OCRL strong 707 38754659 39031778 + OCRL moderate 708 39155509 39265102 − OCRL moderate 709 39166391 39265102 − OCRL moderate 710 45162547 45245729 − OCRL moderate 711 47139524 47150928 − NYS1 = FRMD7 moderate 712 50265390 50265600 + HPRT1 = HPRT moderate 713 57488638 57657223 − F9 moderate 714 57488638 57657479 − F9 moderate 715 58144545 58146615 − HPRT1 = HPRT moderate 716 58144545 58146615 − HPRT1 = HPRT strong 717 70682654 70704414 − ABCD1 moderate 718 71675010 71699193 + G6PD = G6PDX moderate 719 73030993 73120555 − COL4A5 moderate 720 7708468 7709984 − WAS moderate 721 7780134 7783651 − WAS moderate 722 99337055 99352458 − GJB1 moderate 723 99337055 99352453 − GJB1 moderate 724 99709314 99839595 − GJB1 moderate 725 100618468 100618584 − OA1 = GPR143 moderate 726 101531844 101543844 − OA1 = GPR143 moderate 727 101531844 101543844 − OA1 = GPR143 moderate 728 101541168 101543573 − OA1 = GPR143 moderate 729 10294443 10294862 + OTC moderate 730 110411861 110869443 + CHM moderate 731 126284360 126863066 + BTK moderate 732 126284360 126863066 + BTK strong 733 12648884 12649225 + CSNB1 = NYX moderate 734 12650018 12650277 + CSNB1 = NYX moderate 735 12655982 12656311 + CSNB1 = NYX moderate 736 130117402 130223532 − BTK moderate 737 130117402 130223532 − BTK strong 738 131004413 131009527 − BTK moderate 739 131223346 131231296 + GLA moderate 740 132330954 132331138 + GLA moderate 741 132331073 132331146 + GLA moderate 742 13290060 13290192 − OA1 = GPR143 moderate 743 133243165 133246017 − GLA moderate 744 134105558 135040850 + TBG = SERPINA7 strong 745 134105558 135040850 + TBG = SERPINA7 moderate 746 134105558 135040850 + TBG = SERPINA7 strong 747 134105558 135040850 + TBG = SERPINA7 moderate 748 136144963 136145837 + TBG = SERPINA7 moderate 749 136145906 136206280 + TBG = SERPINA7 moderate 750 136224009 136224144 + OA1 = GPR143 moderate 751 138062502 138063011 + OA1 = GPR143 moderate 752 138820850 138821158 − COL4A5 moderate 753 140098882 140100407 + COL4A5 moderate 754 140853218 141122546 − COL4A5 strong 755 140853218 141122546 − COL4A5 moderate 756 140989754 140990880 − XK moderate 757 147242402 147242529 − ALAS2 moderate 758 147481431 147502847 + FDG1 moderate 759 147481431 147521724 + FDG1 moderate 760 147481431 147521724 + FDG1 moderate 761 148444127 148450813 − MRX1 = IQSEC2 moderate 762 148444127 148450813 − MRX1 = IQSEC2 moderate 763 148451529 148451804 + MRX1 = IQSEC2 moderate 764 153915277 153915525 − PHEX moderate 765 157241673 157241983 − RS1 moderate 766 157573079 157573160 + OA1 = GPR143 moderate 767 160391523 160396094 − PIGA moderate 768 163790030 163820681 − SEDL = RAPPC2 moderate 769 163810341 163820642 − SEDL = RAPPC2 moderate 770 163810341 163820642 − SEDL = RAPPC2 moderate 771 17135024 17148750 − NDP moderate 772 20003237 20003672 + UBA1 moderate 773 20194911 20226322 + UBA1 strong 774 20194911 20226322 + UBA1 moderate 775 20194911 20226322 + UBA1 strong 776 20194911 20226322 + UBA1 moderate 777 33868348 33902336 + COL4A5 strong 778 33868348 33902336 + COL4A5 moderate 779 33868348 33902336 + COL4A5 strong 780 33868348 33902336 + COL4A5 moderate 781 34139837 34139989 + OCRL moderate 782 35600278 35604805 − OCRL strong 783 35600278 35604805 − OCRL moderate 784 35897792 35917936 − OCRL moderate 785 35961900 35966603 + OCRL moderate 786 38754659 38966731 + OCRL strong 787 38754659 38966731 + OCRL moderate 788 39264775 39265078 − OCRL moderate 789 45227508 45245609 − OCRL moderate 790 45694535 45761226 + OCRL strong 791 45694535 45761226 + OCRL moderate 792 45695238 45746514 + OCRL strong 793 45695238 45746514 + OCRL moderate 794 45696947 45761226 + OCRL strong 795 45696947 45761226 + OCRL moderate 796 45697574 45698600 + OCRL strong 797 45697574 45698600 + OCRL moderate 798 45976926 46005231 + OCRL moderate 799 46838852 46848439 + NYS1 = FRMD7 moderate 800 46838852 46848438 + NYS1 = FRMD7 moderate 801 49029960 49034525 − NYS1 = FRMD7 strong 802 49029960 49034525 − NYS1 = FRMD7 moderate 803 49033169 49033742 − NYS1 = FRMD7 strong 804 49033169 49033742 − NYS1 = FRMD7 moderate 805 49033355 49034263 − NYS1 = FRMD7 strong 806 49033355 49034263 − NYS1 = FRMD7 moderate 807 49775584 49775692 − HPRT1 = HPRT moderate 808 53838689 53851246 − HPRT1 = HPRT moderate 809 54644626 54644698 − HPRT1 = HPRT moderate 810 54644626 54644698 − HPRT1 = HPRT moderate 811 56316667 56386391 − F9 moderate 812 56421226 56421304 − F9 moderate 813 57392756 57392833 − OA1 = GPR143 moderate 814 57761975 57762010 − OA1 = GPR143 moderate 815 5977553 5977692 + CLCN5 moderate 816 65932068 65932563 + FMR1 moderate 817 65932227 65932774 + FMR1 moderate 818 67712928 67730355 − MTM1 moderate 819 67716098 67730317 − MTM1 moderate 820 68809408 68809659 + MTM1 moderate 821 68809643 68809983 + MTM1 moderate 822 68809715 68813851 + MTM1 moderate 823 68917141 68920567 + MTM1 moderate 824 68917141 68920567 + MTM1 strong 825 68917141 68920567 + MTM1 moderate 826 68917141 68920567 + MTM1 strong 827 69062152 69066323 + MTM1 moderate 828 69062152 69066323 + MTM1 moderate 829 69514307 69520142 − MTM1 moderate 830 69519852 69520142 − MTM1 moderate 831 70232678 70276882 + ABCD1 moderate 832 70232678 70276882 + ABCD1 moderate 833 70232678 70276882 + ABCD1 moderate 834 70232678 70276882 + ABCD1 moderate 835 70659581 70659693 + OA1 = GPR143 moderate 836 71167461 71171740 − AVPR2 moderate 837 71209543 71210333 − AVPR2 moderate 838 71491032 71491211 − EMD moderate 839 71491144 71491278 − EMD moderate 840 71500100 71501024 + EMD moderate 841 71528089 71533374 + EMD moderate 842 71528089 71535487 + EMD moderate 843 71528090 71535488 + EMD moderate 844 7215764 7224495 + PQBP1 moderate 845 72759656 72767094 + F8 moderate 846 73120309 73120521 − COL4A5 moderate 847 7418957 7453752 + PQBP1 moderate 848 75715283 75829194 − XK moderate 849 75715283 75829194 − XK moderate 850 75726052 75829121 − XK moderate 851 75726052 75829121 − XK moderate 852 75762644 75829230 − XK moderate 853 7706844 7709637 − WAS moderate 854 7731609 7753084 − WAS moderate 855 7731609 7753084 − WAS moderate 856 7731617 7753017 − WAS moderate 857 7767001 7770024 − WAS moderate 858 7767001 7770024 − WAS moderate 859 7770979 7783623 − WAS moderate 860 7770979 7783623 − WAS moderate 861 82819378 82820964 + DAX1 = NR0B1 moderate 862 91780815 91787329 − MRX1 = IQSEC2 moderate 863 9233402 9240129 − CYBB moderate 864 98835952 98836294 + GJB1 moderate 865 99750118 99839585 − GJB1 moderate 866

TABLE IX Human LiftOver Ezh2 binding sites SEQ ID Start Finish Strand Disease Gene Mod/Strong NO: 38420746 38548056 + OTC moderate 867 38420761 38548175 + OTC moderate 868 73755234 73755237 − ABCB7 moderate 869 74145376 74145592 − ABCB7 moderate 870 38652969 38664787 − OTC moderate 871 38652969 38664787 − OTC strong 872 77422903 77423610 − PGK1 moderate 873 80065639 80068874 + PGK1 moderate 874 80065639 80068874 + PGK1 moderate 875 84498794 84521473 + CHM moderate 876 39547664 39547694 − OTC moderate 877 39646386 39646595 − OTC moderate 878 39646386 39646595 − OTC moderate 879 40595745 40649934 + CSNB1 = NYX strong 880 40595245 40649934 + CSNB1 = NYX moderate 881 95939805 95940396 + BTK moderate 882 95939805 95940396 + BTK strong 883 95939805 96319018 + BTK moderate 884 95939805 96319018 + BTK strong 885 40944519 40945909 + CSNB1 = NYX moderate 886 40944564 41082678 + CSNB1 = NYX moderate 887 40944564 41089870 + CSNB1 = NYX moderate 888 40944564 41100156 + CSNB1 = NYX moderate 889 1.01E+08 1.01E+08 + BTK moderate 890 1.01E+08 1.01E+08 + GLA moderate 891 1.02E+08 1.02E+08 + GLA moderate 892 1.02E+08 1.02E+08 + GLA moderate 893 1.02E+08 1.02E+08 + GLA moderate 894 1.05E+08 1.05E+08 + TBG = SERPINA7 moderate 895 1.05E+08 1.05E+08 + TBG = SERPINA7 moderate 896 1.05E+08 1.05E+08 + TBG = SERPINA7 moderate 897 1.06E+08 1.06E+08 − TBG = SERPINA7 moderate 898 1.06E+08 1.06E+08 − TBG = SERPINA7 moderate 899 1.06E+08 1.06E+08 + PRPS1 moderate 900 1.07E+08 1.07E+08 + PRPS1 moderate 901 1.07E+08 1.07E+08 + PRPS1 moderate 902 1.07E+08 1.07E+08 − PRPS1 moderate 903 1.07E+08 1.07E+08 − COL4A5 moderate 904 1.07E+08 1.08E+08 − COL4A5 moderate 905  1.1E+08  1.1E+08 − COL4A5 moderate 906  1.1E+08  1.1E+08 + COL4A5 moderate 907 54561410 54591707 + FGD1 moderate 908 54208636 54209706 − PHF8 moderate 909 53963676 54070922 − PHF8 moderate 910 53963676 54070908 − PHF8 moderate 911 53963676 54070908 − PHF8 moderate 912 54070443 54070616 + PHF8 moderate 913 53577614 53713695 − MRX1 = IQSEC2 moderate 914 53405849 53449660 − MRX1 = IQSEC2 moderate 915 53405849 53449660 − MRX1 = IQSEC2 moderate 916 53283545 53350548 − MRX1 = IQSEC2 strong 917 53283545 53350548 − MRX1 = IQSEC2 moderate 918 53111515 53117727 + MRX1 = IQSEC2 moderate 919 53111515 53117727 + MRX1 = IQSEC2 moderate 920 53111515 53117777 + MRX1 = IQSEC2 moderate 921 55513030 55516285 − ALAS2 moderate 922 57095072 57097138 − ALAS2 moderate 923 23722764 23761432 − SAT = SAT1 moderate 924 23761017 23761415 − SAT = SAT1 moderate 925 23760757 23761407 − SAT = SAT1 moderate 926 20039469 20137382 − PHKA2 moderate 927 19550319 19905867 − PHKA2 moderate 928 17673951 17674501 − CC = NHS strong 929 17673951 17674501 − CC = NHS moderate 930 17673951 17674501 − CC = NHS strong 931 17673951 17674501 − CC = NHS moderate 932 16737682 16754364 + CC = NHS moderate 933 15872785 15873088 − PIGA strong 934 15872785 15873088 − PIGA moderate 935 15848182 15873081 − PIGA strong 936 15848182 15873081 − PIGA moderate 937 43514157 43514486 + NDP moderate 938 43515447 43595516 + NDP moderate 939 13671391 13671542 − SEDL = TRAPPC2 moderate 940 12809471 12837836 + SEDL = TRAPPC2 moderate 941 46433208 46434914 + UBA1 strong 942 46433208 46434914 + UBA1 moderate 943 46433208 46457778 + UBA1 strong 944 46433208 46457778 − UBA1 moderate 945 46772015 46772258 + UBA1 moderate 946 47004091 47041189 + UBA1 strong 947 47004091 47041189 + UBA1 moderate 948 47092379 47103954 + UBA1 moderate 949 1.18E+08 1.18E+08 + COL4A5 moderate 950 1.18E+08 1.18E+08 + COL4A5 moderate 951 1.18E+08 1.18E+08 − COL4A5 moderate 952 1.18E+08 1.18E+08 + COL4A5 strong 953 1.18E+08 1.18E+08 + COL4A5 moderate 954 1.18E+08 1.18E+08 + OCRL moderate 955 1.18E+08 1.18E+08 − OCRL moderate 956 1.19E+08 1.19E+08 − OCRL moderate 957 1.19E+08 1.19E+08 − OCRL moderate 958 1.19E+08 1.19E+08 + OCRL moderate 959 1.19E+08 1.19E+08 + OCRL moderate 960 1.19E+08 1.19E+08 + OCRL moderate 961 1.19E+08 1.19E+08 + OCRL moderate 962 1.19E+08 1.19E+08 − OCRL moderate 963 1.19E+08 1.19E+08 − OCRL moderate 964 1.18E+08 1.19E+08 + OCRL moderate 965 1.19E+08 1.19E+08 + OCRL moderate 966 1.22E+08 1.23E+08 + OCRL strong 967 1.22E+08 1.23E+08 + OCRL moderate 968 1.24E+08 1.24E+08 − OCRL strong 969 1.24E+08 1.24E+08 − OCRL moderate 970 1.24E+08 1.24E+08 − OCRL strong 971 1.24E+08 1.24E+08 − OCRL moderate 972 1.29E+08 1.29E+08 − OCRL strong 973 1.29E+08 1.29E+08 − OCRL moderate 974 1.29E+08 1.29E+08 + OCRL strong 975 1.29E+08 1.29E+08 + OCRL moderate 976 1.29E+08 1.31E+08 + OCRL moderate 977 1.31E+08 1.31E+08 − NYS1 = FRMD7 moderate 978 1.31E+08 1.31E+08 − NYS1 = FRMD7 moderate 979 1.31E+08 1.31E+08 − NYS1 = FRMD7 moderate 980 1.31E+08 1.31E+08 − NYS1 = FRMD7 moderate 981 1.31E+08 1.31E+08 + NYS1 = FRMD7 moderate 982 1.32E+08 1.32E+08 − NYS1 = FRMD7 moderate 983 1.32E+08 1.32E+08 − HPRT1 = HPRT moderate 984 1.32E+08 1.32E+08 − HPRT1 = HPRT moderate 985 1.33E+08 1.33E+08 − HPRT1 = HPRT moderate 986 1.33E+08 1.33E+08 − HPRT1 = HPRT moderate 987 1.33E+08 1.33E+08 − HPRT1 = HPRT moderate 988 1.33E+08 1.33E+08 − HPRT1 = HPRT moderate 989 1.33E+08 1.33E+38 − HPRT1 = HPRT moderate 990 1.33E+08 1.33E+08 − HPRT1 = HPRT moderate 991 1.34E+08 1.34E+08 + HPRT1 = HPRT moderate 992 1.34E+08 1.34E+08 + HPRT1 = HPRT moderate 993 1.34E+08 1.34E+08 + HPRT1 = HPRT moderate 994 1.34E+08 1.34E+08 − HPRT1 = HPRT moderate 995 1.34E+08 1.34E+08 − HPRT1 = HPRT moderate 996 1.34E+08 1.34E+08 − HPRT1 = HPRT strong 997 1.34E+08 1.34E+08 − HPRT1 = HPRT moderate 998 1.34E+08 1.34E+08 − HPRT1 = HPRT strong 999 1.34E+08 1.34E+08 − HPRT1 = HPRT moderate 1000 1.34E+08 1.34E+08 − HPRT1 = HPRT strong 1001 1.34E+08 1.34E+08 − HPRT1 = HPRT moderate 1002 1.34E+08 1.34E+08 − HPRT1 = HPRT strong 1003 1.34E+08 1.34E+08 + HPRT1 = HPRT moderate 1004 1.35E+08 1.35E+08 + HPRT1 = HPRT moderate 1005 1.35E+08 1.35E+08 + HPRT1 = HPRT moderate 1006 1.36E+08 1.36E+08 − HPRT1 = HPRT moderate 1007 1.37E+08 1.37E+08 + F9 moderate 1008 1.37E+08 1.37E+08 + F9 strong 1009 1.32E+08 1.32E+08 − HPRT1 = HPRT moderate 1010 1.39E+08 1.39E+08 + F9 moderate 1011 1.39E+08 1.39E+08 + F9 moderate 1012 1.39E+08 1.39E+08 + F9 moderate 1013 1.39E+08 1.39E+08 + F9 moderate 1014  1.4E+08  1.4E+08 + F9 moderate 1015  1.4E+08  1.4E+08 + F9 strong 1016 50143999 50213570 − CLCN5 strong 1017 50143999 50213570 − CLCN5 moderate 1018 1.47E+08 1.47E+08 − FMR1 moderate 1019 1.47E+08 1.47E+08 + FMR1 moderate 1020 1.47E+08 1.47E+08 + FMR1 moderate 1021 1.47E+08 1.47E+08 + FMR1 moderate 1022 1.49E+08 1.49E+08 − MTM1 moderate 1023  1.5E+08  1.5E+08 − MTM1 moderate 1024  1.5E+08  1.5E+08 − MTM1 strong 1025  1.5E+08  1.5E+08 + MTM1 moderate 1026 1.34E+08 1.34E+08 + HPRT1 = HPRT moderate 1027 49644159 49648485 + CLCN5 moderate 1028 49641851 49644052 − CLCN5 moderate 1029 1.52E+08 1.52E+08 + ABCD1 moderate 1030 1.53E+08 1.53E+08 − ABCD1 moderate 1031 1.53E+08 1.53E+08 + ABCD1 moderate 1032 1.53E+08 1.53E+08 + ABCD1 strong 1033 1.53E+08 1.53E+08 + ABCD1 moderate 1034 1.53E+08 1.53E+08 − L1CAM moderate 1035 1.53E+08 1.53E+08 − AVPR2 moderate 1036 1.54E+08 1.54E+08 + EMD moderate 1037 1.54E+08 1.54E+08 + EMD moderate 1038 1.54E+08 1.54E+08 + EMD moderate 1039 1.54E+08 1.54E+08 + EMD moderate 1040 1.49E+08 −1.5E+08 − OA1 = GPR143 moderate 1041 1.49E+08 1.49E+08 − MTM1 moderate 1042 1.54E+08 1.54E+08 + EMD moderate 1043 1.54E+08 1.54E+08 + IKBKG moderate 1044 1.54E+08 1.54E+08 + IKBKG moderate 1045 1.54E+08 1.54E+08 + IKBKG moderate 1046 1.54E+08 1.54E+08 + F8 moderate 1047 1.15E+08 1.15E+08 − COL4A5 moderate 1048 1.15E+08 1.15E+08 − COL4A5 moderate 1049 48783029 48815641 − PQBP1 moderate 1050 48778055 48815149 − PQBP1 moderate 1051 48750837 48754815 − PQBP1 moderate 1052 48693572 48755112 − PQBP1 moderate 1053 48693572 48755112 − PQBP1 moderate 1054 48755060 48755074 + PQBP1 moderate 1055 48367347 48371257 + WAS moderate 1056 48367347 48371257 + WAS moderate 1057 34645190 34675419 − XK moderate 1058 34645190 34675419 − XK moderate 1059 34645190 34675419 − XK moderate 1060 34648380 34675385 − XK moderate 1061 30845559 30907504 − DAX1 = NR0B1 moderate 1062 30845559 30907504 − DAX1 = NR0B1 moderate 1063 30260253 30261290 + DAX1 = NR0B1 moderate 1064 37430765 37481482 + XK moderate 1065 24482937 24483410 − SAT = SAT1 moderate. 1066 51486509 51491404 + CLCN5 moderate 1067 51486509 51491404 + CLCN5 strong 1068 57931970 57936908 + ALAS2 moderate 1069 64887470 64961793 + AR moderate 1070 64887470 64961795 + AR moderate 1071 68048806 68061977 + ED1 = EDA moderate 1072 68048306 68061977 + ED1 = EDA moderate 1073 68233310 68233735 + ED1 = EDA moderate 1074 68316315 68357637 − ED1 = EDA moderate 1075 68316315 68351637 − ED1 = EDA strong 1076 68316315 68357637 − ED1 = EDA moderate 1077 68316315 68357637 − ED1 = EDA strong 1078 68724170 68724592 + ED1 = EDA moderate 1079 68724653 68724923 − ED1 = EDA moderate 1080 68724838 68724991 + ED1 = EDA moderate 1081 68835853 69179424 + ED1 = EDA moderate 1032 68835353 69259315 + ED1 = EDA moderate 1083 68835936 69259315 + ED1 = EDA moderate 1084 68835936 69259315 + ED1 = EDA strong 1085 69642906 69645256 + GJB1 moderate 1086 69642906 69645256 + GJB1 moderate 1087 69664586 69674956 − GJB1 moderate 1088 69664586 69686006 − GJB1 moderate 1089 69670135 69670233 − GJB1 moderate 1090 70316012 70323383 + GJB1 moderate 1091 70752905 70766316 + GJB1 moderate 1092 70152905 70766816 + GJB1 strong 1093 70752921 70766864 + GJB1 moderate 1094 70752921 70766864 + GJB1 strong 1095 70883692 70885694 − GJB1 moderate 1096 70883692 70885694 − GJB1 moderate 1097 71130717 71373136 + GJB1 moderate 1098 71130717 71373136 + GJB1 moderate 1099 71130717 71373136 + GJB1 strong 1100 71130720 71230692 + GJB1 moderate 1101 71130720 71230692 + GJB1 strong 1102 18443703 18646844 + CDKL5 moderate 1103 1.07E+08 1.07E+08 − PRPS1 strong 1104 1.07E+08 1.07E+08 − PRPS1 moderate 1105 1.37E+08 1.37E+08 + F9 moderate 1106 1.37E+08 1.37E+08 + F9 moderate 1107 1.37E+08 1.37E+08 + F9 strong 1108 1.07E+08 1.07E+08 + PRPS1 moderate 1109 1.07E+08 1.07E+08 + PRPS1 moderate 1110  1.3E+08  1.3E+08 − NYS1 = FRMD7 moderate 1111 18907129 18912300 − PHKA2 moderate 1112 1.37E+08 1.37E+08 + F9 moderate 1113 1.37E+08 1.37E+08 + F9 strong 1114 19934359 20009176 − PHKA2 moderate 1115 19934359 20009176 − PHKA2 moderate 1116 51486531 51491404 + CLCN5 moderate 1117 51486537 51491404 + CLCN5 strong 1118 39910507 40036404 − CSNB1 = NYX strong 1119 39910507 40036404 − CSNB1 = NYX moderate 1120  1.3E+08  1.3E+08 − NYS1 = FRMD7 moderate 1121 1.39E+08 1.39E+08 − F9 moderate 1122 40513127 40595044 − CSNB1 = NYX strong 1123 40513127 40595044 − CSNB1 = NYX moderate 1124 39910507 40005885 − CSNB1 = NYX strong 1125 39910507 40005885 − CSNB1 = NYX moderate 1126 1.14E+08 1.14E+08 − COL4A5 moderate 1127 1.35E+08 1.35E+08 + HPRT1 = HPRT moderate 1128 1.39E+08 1.39E+08 − F9 moderate 1129 61718666 61157125 + AR moderate 1130 67718666 67757125 + AR moderate 1131 1.24E+08 1.24E+08 − OCRL strong 1132 1.24E+08 1.24E+08 − OCRL moderate 1133 67913429 67945678 + ED1 = EDA moderate 1134 38660685 38665692 + OTC moderate 1135 1.01E+08 1.01E+08 − GLA moderate 1136 19968429 20009740 − PHKA2 moderate 1137 1.24E+08 1.24E+08 − OCRL strong 1138 1.24E+08 1.24E+08 − OCRL moderate 1139 48830738 48858649 − PQBP1 moderate 1140 48830738 48853649 − PQBP1 moderate 1141 48363330 48379198 + WAS moderate 1142 48363330 48379198 + WAS moderate 1143 54947223 54957868 + ALAS2 moderate 1144 67718666 67751756 + AR moderate 1145 67913429 67942045 + ED1 = EDA moderate 1146 49123140 49146158 + PQBP1 moderate 1147 1.29E+08 1.29E+08 − OCRL strong 1148 1.29E+08 1.29E+08 − OCRL moderate 1149 40594441 40595080 − CSNB1 = NYX strong 1150 40594441 40595080 − CSNB1 = NYX moderate 1151 1.29E+08 1.29E+08 − OCRL moderate 1152 48750337 48754315 − PQBP1 moderate 1153 1.31E+08 1.31E+08 − NYS1 = FRMD7 moderate 1154 1.07E+08 1.07E+08 − PRPS1 moderate 1155 19553529 19587588 − PHKA2 moderate 1156 1.54E+08 1.54E+08 − IKBKG moderate 1157 1.34E+08 1.54E+08 − IKBKG strong 1158 1.19E+08 1.19E+08 − OCRL moderate 1159 50336327 50551310 − CLCN5 moderate 1160 1.53E+08 1.53E+08 − AVPR2 moderate 1161 48779439 48814344 − PQBP1 moderate 1162 48779489 48814344 − PQBP1 moderate 1163 51636562 51639796 + MRX1 = IQSEC2 moderate 1164 51636562 51639796 + MRX1 = IQSEC2 moderate 1165 73816770 73834464 − ABCB7 moderate 1166 73816770 73834464 − ABCB7 strong 1167 73953408 74145290 − ABCB7 moderate 1168 73953408 74145305 − ABCB7 moderate 1169 76995795 77041698 − ATRX moderate 1170 39921386 39957214 − CSNB1 = NYX strong 1171 39921386 39957214 − CSNB1= NYX. moderate 1172 39922665 39957225 − CSNB1 = NYX strong 1173 39922665 39957225 − CSNB1 = NYX moderate 1174 40511131 40595078 − CSNB1 = NYX strong 1175 40511131 40595078 − CSNB1 = NYX moderate 1176 99657457 99665277 − BTK moderate 1177 99657457 99665277 − BTK strong 1178 99929475 99987138 − BTK moderate 1179 99929475 99987138 − BTK strong 1180 41374187 41782933 − CSNB1 = NYX moderate 1181 1.01E+08 1.01E+08 + BTK moderate 1182 41416196 41782933 − CSNB1 = NYX moderate 1183 41418781 41782940 − CSNB1 = NYX moderate 1184 1.03E+08 1.03E+08 − TBG = SERPINA7 moderate 1185 1.03E+08     0 − OA1 = GPR143 moderate 1186 1.03E+08 1.03E+08 − TBG = SERPINA7 moderate 1187 1.06E+08 1.06E+08 − PRPS1 strong 1188 1.06E+08 1.06E+08 − PRPS1 moderate 1189 1.07E+08 1.08E+08 − COL4A5 moderate 1190 1.08E+08 1.08E+08 − COL4A5 moderate 1191 1.08E+08 1.08E+08 + COL4A5 moderate 1192 1.08E+08 1.08E+08 + COL4A5 moderate 1193 1.08E+08 1.08E+08 + COL4A5 moderate 1194 1.09E+08  1.1E+08 − COL4A5 moderate 1195 1.09E+08  1.1E+08 − COL4A5 moderate 1196 1.12E+08 1.12E+08 − COL4A5 moderate 1197 1.14E+08 1.14E+08 − COL4A5 moderate 1198 1.14E+08 1.14E+08 − COL4A5 moderate 1199 53458207 53461346 − MRX1 = IQSEC2 moderate 1200  9754409  9917528 + OA1 = GPR143 moderate 1201  9754412  9901148 + OA1 = GPR143 moderate 1202 56259009 56314850 − ALAS2 moderate 1203 14891501 14934512 + PIGA moderate 1204 13752890 13788174 + OFD1 moderate 1205 46533672 46613615 − UBA1 moderate 1206 47004307 47046225 + UBA1 strong 1207 47004307 47046225 + UBA1 moderate 1208 1.18E+08 1.18E+08 + COL4A5 moderate 1209 1.18E+08 1.18E+08 − OCRL moderate 1210 1.13E+08 1.18E+08 − OCRL moderate 1211 1.19E+08 1.19E+08 − OCRL moderate 1212 1.19E+08 1.19E+08 − OCRL moderate 1213 1.19E+08 1.19E+08 − OCRL moderate 1214 1.22E+03 1.23E+08 + OCRL strong 1715 1.22E+08 1.23E+08 + OCRL moderate 1216 1.23E+08 1.23E+08 − OCRL moderate 1217 1.23E+08 1.23E+08 − OCRL moderate 1218 1.29E+08 1.29E+08 − OCRL moderate 1219  1.3E+08  1.3E+08 − NYS1 = FRMD7 moderate 1220 1.34E+08 1.34E+08 + HPRT1 = HPRT moderate 1221 1.39E+08 1.39E+08 − F9 moderate 1222 1.39E+08 1.39E+08 − F9 moderate 1223 1.34E+08 1.34E+08 + HPRT1 = HPRT moderate 1224 1.34E+08 1.34E+08 + HPRT1 = HPRT strong 1225 1.53E+08 1.53E+08 − ABCD1 moderate 1226 1.54E+08 1.54E+08 + G6PD = G6PDX moderate 1227 1.15E+08 1.15E+08 + COL4A5 moderate 1228 48455856 48457390 + WAS moderate 1229 48367347 48371257 + WAS moderate 1230 71423288 71458939 − GJB1 moderate 1231 71423288 71458939 − GJB1 moderate 1232 71798692 71934148 − GJB1 moderate 1233 38663247 38663698 + OTC moderate 1234 85403464 85999361 + CHM moderate 1235 95939886 96685244 + BTK moderate 1236 95939336 96635244 + BTK strong 1237 40944807 40945143 + CSNB1 = NYX moderate 1238 40945858 40946083 + CSNB1 = NYX moderate 1239 40950911 40950974 + CSNB1 = NYX moderate 1240 99546628 99665277 − BTK moderate 1241 99546628 99665277 − BTK strong 1242 1.01E+08 1.01E+08 − BTK moderate 1243 1.01E+08 1.01E+08 + GLA moderate 1244 1.02E+08 1.02E+08 + GLA moderate 1245 1.02E+08 1.02E+08 + GLA moderate 1246 1.03E+08 1.03E+08 + GLA moderate 1247 1.04E+08 1.05E+08 + TBG = SERPINA7 strong 1248 1.04E+08 1.05E+08 + TBG = SERPINA7 moderate 1249 1.04E+08 1.05E+08 + TBG = SERPINA7 strong 1250 1.04E+08 1.05E+08 + TBG = SERPINA7 moderate 1251 1.06E+08 1.06E+08 + TBG = SERPINA7 moderate 1252 1.06E+08 1.06E+08 + TBG = SERPINA7 moderate 1253 1.09E+08 1.09E+08 − COL4A5 moderate 1254  1.1E+08  1.1E+08 + COL4A5 moderate 1255 1.11E+08 1.11E+08 − COL4A5 strong 1256 1.11E+08 1.11E+08 − COL4A5 moderate 1257 35820375 35821357 + XK moderate 1258 54840303 54840922 + ALAS2 moderate 1259 54475005 54522668 − FGD1 moderate 1260 54475005 54527668 − FGD1 moderate 1261 54475005 54522668 − FGD1 moderate 1262 53449811 53453282 + MRX1 = IQSEC2 moderate 1263 53449811 53453282 + MRX1 = IQSEC2 moderate 1264 53448837 53449093 − MRX1 = IQSEC2 moderate 1265 21975056 21975269 + PHEX moderate 1266 18651084 18651384 + RS1 moderate 1267 15808383 15822299 + PIGA moderate 1268 12809471 12837836 + SEDL = TRAPPC2 moderate 1269 12809525 12818878 + SEDL = TRAPPC2 moderate 1270 12809525 12818818 + SEDL = TRAPPC2 moderate 1271 44383408 44401509 − NDP moderate 1272 46772434 46772364 + UBA1 moderate 1273 47004623 47044505 + UBA1 strong 1274 47004623 47044506 + UBA1 moderate 1275 47004623 47044506 + UBA1 strong 1276 47004623 47044506 + UBA1 moderate 1277 1.18E+08 1.18E+08 + COL4A5 strong 1278 1.18E+08 1.18E+08 + COL4A5 moderate 1279 1.18E+08 1.18E+08 + COL4A5 strong 1280 1.18E+08 1.18E+08 + COL4A5 moderate 1281 1.18E+08 1.18E+08 + OCRL moderate 1282 1.19E+08 1.19E+08 − OCRL strong 1283 1.19E+08 1.19E+08 − OCRL moderate 1284  1.2E+08  1.2E+08 − OCRL moderate 1285  1.2E+08  1.2E+08 + OCRL moderate 1286 1.22E+08 1.23E+08 + OCRL strong 1287 1.22E+08 1.23E+08 + OCRL moderate 1288 1.23E+08 1.23E+08 − OCRL moderate 1289 1.29E+08 1.29E+08 − OCRL moderate 1290 1.29E+08 1.29E+08 + OCRL strong 1291 1.29E+08 1.29E+08 + OCRL moderate 1292 1.29E+08 1.29E+08 + OCRL strong 1293 1.29E+08 1.29E+08 + OCRL moderate 1294 1.29E+08 1.29E+08 + OCRL strong 1295 1.29E+08 1.29E+08 + OCRL moderate 1296 1.29E+08 1.29E+08 + OCRL strong 1297 1.29E+08 1.29E+08 + OCRL moderate 1298 1.29E+08 1.29E+08 + OCRL moderate 1299  1.3E+08  1.3E+08 + NYS1 = FRMD7 moderate 1300  1.3E+08  1.3E+08 + NYS1 = FRMD7 moderate 1301 1.32E+08 1.32E+08 − NYS1 = FRMD7 strong 1302 1.32E+08 1.32E+08 − NYS1 = FRMD7 moderate 1303 1.32E+08 1.32E+08 − NYS1 = FRMD7 strong 1304 1.32E+08 1.32E+08 − NYS1 = FRMD7 moderate 1305 1.32E+08 1.32E+08 − NYS1 = FRMD7 strong 1306 1.32E+08 1.32E+08 − NYS1 = FRMD7 moderate 1307 1.33E+08 1.38E+08 − HPRT1 = HPRT moderate 1308 1.35E+08 1.35E+08 − HPRT1 = HPRT moderate 1309 1.36E+08 1.36E+08 − HPRT1 = HPRT moderate 1310 1.36E+08 1.36E+08 − HPRT1 = HPRT moderate 1311 1.38E+08 1.38E+08 − F9 moderate 1312 1.38E+08 1.38E+08 − F9 moderate 1313 50556592 50556774 − CLCN5 moderate 1314 1.47E+08 1.47E+08 + FMR1 moderate 1315 1.47E+08 1.47E+08 + FMR1 moderate 1316 1.49E+08 1.49E+08 − MTM1 moderate 1317 1.49E+08 1.49E+08 − MTM1 moderate 1318  1.5E+08  1.5E+08 + MTM1 moderate 1319  1.5E+08  1.5E+08 + MTM1 moderate 1320  1.5E+08  1.5E+08 + MTM1 moderate 1321  1.5E+08  1.5E+08 + MTM1 moderate 1322  1.5E+08  1.5E+08 + MTM1 strong 1323  1.5E+08  1.5E+08 + MTM1 moderate 1324  1.5E+08  1.5E+08 + MTM1 strong 1325 1.51E+08 1.51E+08 + MTM1 moderate 1326 1.51E+08 1.51E+08 + MTM1 moderate 1327 1.51E+08 1.51E+08 − MTM1 moderate 1328 1.51E+08 1.51E+08 − MTM1 moderate 1329 1.52E+08 1.52E+08 + ABCD1 moderate 1330 1.52E+08 1.52E+08 + ABCD1 moderate 1331 1.32E+08 1.52E+08 + ABCD1 moderate 1332 1.52E+08 1.52E+08 + ABCD1 moderate 1333 1.53E+08 1.53E+08 − AVPR2 moderate 1334 1.53E+08 1.53E+08 − AVPR2 moderate 1335 1.54E+08 1.54E+08 − EMD moderate 1336 1.34E+08 1.54E+08 − EMD moderate 1337 1.54E+03 1.54E+08 + EMD moderate 1338 1.34E+08 1.54E+08 + EMD moderate 1339 1.54E+08 1.54E+08 + EMD moderate 1340 1.54E+08 1.54E+08 + EMD moderate 1341 49049104 49056698 − PQBP1 moderate 1342 1.54E+03 1.54E+08 + F8 moderate 1343 1.15E+08 1.15E+08 + COL4A5 moderate 1344 48778055 48815149 − PQBP1 moderate 1345 37208552 37301473 + XK moderate 1346 37208552 37301473 + XK moderate 1347 37208635 37293306 + XK moderate 1348 37208635 37293306 + XK moderate 1349 37208533 37269301 + XK moderate 1350 48436197 48458240 + WAS moderate 1351 48398062 48419602 + WAS moderate 1352 48398062 48419602 + WAS moderate 1353 48398130 48419594 + WAS moderate 1354 43330199 48382586 + WAS moderate 1355 48380199 48382586 + WAS moderate 1356 48367374 48379193 + WAS moderate 1357 48367374 48379193 + WAS moderate 1358 30905799 30907361 − DAX1 = NR0B1 moderate 1359 51636754 51645448 + MRX1 = IQSEC2 moderate 1360 37700168 37706872 − CYBB moderate 1361 70753491 70753347 + GJB1 moderate 1362 71838498 71934132 − GJB1 moderate 1363

Oligonucleotide drugs targeting the disease genes are designed using the reverse complement of the lncRNA sequence listed in the LncRNA Tables VI and VII.

Example 9 Targeting paRNAs to Treat X-linked Diseases

As described above, there are over 40 X-linked diseases associated with the presence of a mutation on the active X. These diseases would be treatable or even curable if the normal allele, present on the inactive X, could be reactivated. It would not be desirable to reactivate the entire X chromosome, as over-dosage could lead to other problems such as cancer. Thus, locus-specific reactivation is desirable, but the presence of many layers of heterochromatin may make this difficult using standard methods.

To determine whether locus-specific reactivation can be achieved by taking advantage of Polycomb spreading sites, reactivation of the Mecp2 gene was attempted.

Mecp2 mutations cause Rett syndrome, an autism spectrum disorder that is fatal in affected males and that results in autistic, progressive neurological symptoms, with regression of language and motor control, seizures, and respiratory diseases in females beginning at about 1-3 years of age. It is not a degenerative disease, and mouse models show that the condition is reversible if Mecp2 expression is restored postnatally, even after onset of symptoms (Guy et al., Science. 315(5815):1143-7 (2007)).

In mice, Mecp2 resides within a 5 mb gene-rich cluster. Using the methods described in Examples 1-8 above, strong and moderate PRC2 binding sites in the cluster were identified, There are 6 PRC2 strong sites or “spreading elements” for this gene cluster present in d0ES, d7 ES, and/or MEF, and over 170 PRC2 moderate sites. The PRC2 binding sites had paRNAs associated with them, as shown by methods outlined above in Tables VI and VII. Mecp2 has an antisense paRNA; the Mecp2 gene is on the − strand of the chromosome. See WO 2012/065143 and WO 2012/087983.

Three approaches were used to increase Mecp2 expression: first, targeting the Mecp2 antisense lncRNA; second, targeting the strong Polycomb binding sites in the region; and third, targeting both. Gapmer antisense oligos were designed to the small regions of interest. The selected regions for targeting the Polycomb sites were the transcripts crossing two strong binding sites closest to the Mecp2 gene, corresponding to seg_(—)57 and seg_(—)58 in Table IVA, above. For targeting the Mecp2 antisense, gapmers were designed against the antisense RNA that overlaps the gene body of Mecp2 region. The gapmers carried LNA bases at the ends and have full phosphorothioate backbone.

Mecp2-AS (antisense transcript)-targeting oligos were as shown in Table X; oligos targeting the PRC2 strong binding sites are shown in Table XL All sequences are shown 5′-3′.

TABLE X SEQ ID LNA Sequence NO: LNA 17 +AGA+TCA+GGA+TGT+AG+C-Phos 1364 LNA 22 +T+C+AG*T*C*C*C*T*C*A*C+T+C+C-Phos 1365 +indicates placement of LNA nucleotides; *refers to phosphorothioate backbone

TABLE XI LNA Sequence SEQ ID NO: Segment 57 57 plus-94-LNA A CGGTGCCTAGCATGCA 1366 57 minus-226-LNA B GTTGATTGATAGGA 1367 57 Plus-548-LNA E TGGAAAGGAGGAGGTG 1368 57 minus-857-LNA F GTGTATGCGTGTGA 1369 Segment 58 58 Plus-614-LNA C GAAAGGCACGAAGAG 1370 58 minus-771-LNA D GGATGCTTGAAACA 1371 58 Plus-549-LNA G CCTTACCCCTCTAAAA 1372 58 minus-381-LNA H AGGAGCTTAAAGTGAG 1373

To determine the ability of the selected oligos to reactivate Mecp2 from the inactive X chromosome, assays were carried out using genetically marked cells. An F1 mus/cas Mecp:GFP reporter cell line was created as follows, Mecp2:GFP knock-in mice (M. musculus background [mus]) were crossed with wildtype Mus castancus [cas] male mice to generate F1 progeny in which the two X chromosomes can be distinguished by SNPs. Tail tip fibroblasts were outgrown and immortalized using SV40 large T antigen. Clones in which the Mecp2:GFP-bearing musculus X chromosome was inactivated were used for the X-reactivation assays.

Mecp2-GFP Xi cells derived from imortalized Tail tip Fibroblasts (as described above) were grown and passaged in standard Fibroblast HEPES buffered DMEM media with 10% Calf Serum and 1% Penicillin Streptomycin.

Each LNA from Exigon A/S Vedbaek, Denmark was resuspended, from HPLC Purified Lyophilized powder, in DEPC treated water to make a 100 uM stock solution and a 10 uM working solution and both were stored at −20° C.

All transfections were done using Lipofectamine LTX and Plus reagent (Invitrogen Catalog #15338-100) in 24 well plates. Each transfection used a mix of three component mixtures that were made and then added to each well in the plate as follows:

1) Mix 1 consisted of: 50 ul of Optimem reduced Serum Medium (Gibco 31985-070)+3 ul of Lipofectamine LTX (Invitrogen Catalog #15338-100) and was added to and allowed to stand at room temperature for at least 5 minutes.

2) Mix 2 consisted of: 50 ul of Optimem LNA to 20-100 nM each +1.5 ul of Plus reagent from the Lipofectamine LTX kit. This mix was allowed to stand for 5 minutes at room temperature.

3) Mix 1 was added dropwise to Mix 2 and allowed to stand at room temperature for at least 5 minutes then 100 ul of this mixture was added dropwise to 400 ul DMEM FCS media containing 5×10⁴ cells in suspension/well of a 24 well plate. Transfected plates of cells were in placed in the incubator, 37C/5% CO2 for 24 hours.

Post transfection, cells from each well were harvested by trypsinization, spun into a pellet at 1000×g for 5 minutes and then lysed in 1 ml Trizol (Invitrogen 15596-026) to extract the RNA using reagent instructions. The RNA pellet was suspended in DEPC treated water and then DNA was removed using Ambion® TURBOT″ DNase AM2238 which was inactivated using the inactivation beads supplied with the kit. RNA was converted to cDNA using SuperScript® Reverse Transcriptase from Invitrogen (Catalog #18080093). QPCR was performed in a 20 ul reaction volume using iQ™ SYBR® Green Supermix Catalog #170-8880 in Biorad CFX96 and CFX384 Real-Time PCR Detection System with the primers shown in Table XII below. All qPCR values are normalized to the housekeeping gene Gapdh.

TABLE XII SEQ ID Name F/R Sequence 5′-3′ NO: GapdhBP1F F ATGAATACGGCTACAGCAACAGG 1374 GapdhBP1R R CTCTTGCTCAGTGTCCTTGCTG 1375 mMecp2 275852F R GCTTGCTACACAGCCATTAC 1376 AC-Mus mMecp2 275852F R GCTTGCTACACAGCCATTAT 1377 AT-Cast mMecp2 275852F F TAGAAGGCCCAGCACAAAGT 1378 F, forward; R, reverse

In the absence of any of the oligos, the Mecp2 allele of the active X was expressed at about 500 times the level of the allele on the inactive X.

FIG. 15A shows the results of treating the cells with each of the LNAs, singly or in combination. There was approximately 4-5× upregulation of expression after treating the cells pith LNA 22. Single oligos targeting the PRC2 binding site were also effective; see, e.g., C, D. The combination of oligos ABCD was also effective, oligos E, F, and G in combinations of two were mildly effective, but the EFG combination was exemplary, with approximately 41× upregulation. As shown in FIG. 15B, by comparison, expression of Mecp2 from the Castaneus X (active X) was less affected by the LNA transfections. Cas Xa may have some upregulation because the strong polycomb stations are also present on the Xa, Expression of a distant gene, GPC4 (which is about 20 Mb away from Mecp2) was also evaluated after treatment with the various oligos. Little to no upregulation was seen, providing evidence for the locus-specificity of the approach described herein. To increase expression of mcp2 in human cells, e.g., cells in a living human, oligos are designed to target the human Mecp2-associated antisense lncRNA, the sequence of which is included herein as SEQ ID NO:10169. In some embodiments, oligos are designed that target a strong or moderate binding site in or near the MECP2 gene, e.g., as shown in table A.

Example 10 Human Allele-specific ChIP-seq—Human paRNAs and PRC2 Binding Sites

Using the methods and criteria described above, PRC2 strong binding sites and their associated paRNAs were identified in two different human cell types cells by analysis of ChfP-scq data for SUZ12 and the catalytic subunit EZH2 in two cell lines, K562 (an erythroleukemia cell line) and GM12878 (a lymphoblastoid cell line). Accession numbers are:

SUZ12 in K562: wgEncodeEH00311:2(exp)/wgEncodeEH000052(input)

EZH2 in K562: wgEncodeEH002089 (exp)/wgEncodeEH000052(input),

EZH2 GM12878: wgEncodeE14003112 (exp)/wgEncodeEH000037(input))

In K562 cells, a total of 578 EZH2 strong sites were identified (Table XIII), and a total of 666 SUZ12 strong sites were found (Table XIV). In GM12878, 215 EZH2 strong sites were found (Table XV). These likely serve as spreading elements for silencing by PRC2 and by other chromatin modifiers. Shown in the Tables are (in column order): the start and end positions (base number on X-chromosome), segment number (name) for the strong EZH2 or SUZ12 site; and the sequence identifier (SEQ ID NO:). All coordinates refer to hg19. Table XIII sets forth the coordinates and SEQ NOs. for the EZH2 strong binding sites identified in K562 cells.

TABLE XIII EZH2 in K562 SEQ start end name ID NO: 372800 374450 seg_1 1379 379550 383950 seg_2 1380 387200 393050 seg_3 1381 419950 421200 seg_4 1382 425800 427350 seg_5 1383 436400 439050 seg_6 1384 458450 460500 seg_7 1385 610100 614650 seg_8 1386 631850 633750 seg_9 1387 750450 752100 seg_10 1388 920750 921950 seg_11 1389 928850 930150 seg_12 1390 961300 964500 seg_13 1391 965950 967550 seg_14 1392 977100 979150 seg_15 1393 988950 996900 seg_16 1394 1232150 1233250 seg_17 1395 1235100 1236300 seg_18 1396 1238350 1241400 seg_19 1397 1324000 1325900 seg_20 1398 1348200 1349900 seg_21 1399 1392500 1394100 seg_22 1400 1403850 1405100 seg_23 1401 1460050 1461400 seg_24 1402 1464650 1468000 seg_25 1403 1672250 1674650 seg_26 1404 1733950 1735600 seg_27 1405 1747250 1749200 seg_28 1406 2368950 2371350 seg_29 1407 2374650 2376750 seg_30 1408 2381200 2383650 seg_31 1409 2391700 2394350 seg_32 1410 2444150 2446650 seg_33 1411 2451150 2452250 seg_34 1412 2454950 2457000 seg_35 1413 2461000 2462500 seg_36 1414 2664000 2667450 seg_37 1415 2669000 2672950 seg_38 1416 2681550 2683000 seg_39 1417 2684450 2685950 seg_40 1418 2699450 2703000 seg_41 1419 2854000 2856700 seg_42 1420 2873200 2874800 seg_43 1421 2876400 2879500 seg_44 1422 2887500 2888650 seg_45 1423 2936900 2938400 seg_46 1424 2957200 2959050 seg_47 1425 3466650 3467850 seg_48 1426 3482000 3483150 seg_49 1427 3507050 3508700 seg_50 1428 3705050 3707200 seg_51 1429 3708300 3710150 seg_52 1430 3712800 3713800 seg_53 1431 3724050 3726750 seg_54 1432 9153950 9155700 seg_55 1433 9229800 9231600 seg_56 1434 9241950 9244700 seg_57 1435 9246150 9248050 seg_58 1436 9255400 9263150 seg_59 1437 9268600 9269950 seg_60 1438 9273550 9277500 seg_61 1439 9371100 9382750 seg_62 1440 9483500 9485000 seg_63 1441 9793150 9794450 seg_64 1442 9806050 9807500 seg_65 1443 9814250 9818150 seg_66 1444 9823350 9824550 seg_67 1445 9863450 9867000 seg_68 1446 9880300 9881950 seg_69 1447 9883800 9885000 seg_70 1448 9913900 9916050 seg_71 1449 9929000 9930050 seg_72 1450 10048550 10049650 seg_73 1451 10180950 10182200 seg_74 1452 10189550 10190550 seg_75 1453 10405900 10406950 seg_76 1454 10549850 10550950 seg_77 1455 10575350 10576400 seg_78 1456 10577550 10579300 seg_79 1457 10587800 10589900 seg_80 1458 10837250 10839150 seg_81 1459 11358850 11360300 seg_82 1460 11385800 11386800 seg_83 1461 11478950 11480450 seg_84 1462 11482700 11483900 seg_85 1463 11735400 11736450 seg_86 1464 12726850 12727900 seg_87 1465 12750450 12751500 seg_88 1466 12790000 12792000 seg_89 1467 12793350 12796700 seg_90 1468 12801350 12803400 seg_91 1469 12995250 12996450 seg_92 1470 13374100 13375150 seg_93 1471 13450850 13452000 seg_94 1472 13469850 13471200 seg_95 1473 13476300 13477400 seg_96 1474 13508450 13509700 seg_97 1475 13587150 13589150 seg_98 1476 13634850 13636950 seg_99 1477 13800750 13802000 seg_100 1478 13803050 13806050 seg_101 1479 13820050 13821950 seg_102 1480 13832300 13835750 seg_103 1481 13917650 13919650 seg_104 1482 13941900 13943750 seg_105 1483 13954250 13956600 seg_106 1484 13970300 13971650 seg_107 1485 13982450 13985700 seg_108 1486 14056900 14058300 seg_109 1487 14082450 14083900 seg_110 1488 14943900 14945100 seg_111 1489 15286800 15288500 seg_112 1490 15301150 15302150 seg_113 1491 15321650 15322700 seg_114 1492 15354950 15359650 seg_115 1493 15382100 15387750 seg_116 1494 15391300 15392750 seg_117 1495 15661050 15663600 seg_118 1496 16141650 16142650 seg_119 1497 16548550 16550900 seg_120 1498 16919800 16921600 seg_121 1499 16927950 16929000 seg_122 1500 16965250 16968400 seg_123 1501 17028550 17029750 seg_124 1502 17113350 17114550 seg_125 1503 17749950 17751500 seg_126 1504 17876650 17878250 seg_127 1505 18211700 18212750 seg_128 1506 18234150 18238350 seg_129 1507 18249900 18251000 seg_130 1508 18378400 18380050 seg_131 1509 18382850 18383900 seg_132 1510 18412350 18413650 seg_133 1511 18416550 18418150 seg_134 1512 18443550 18447600 seg_135 1513 18451450 18452650 seg_136 1514 18624850 18626400 seg_137 1515 18651650 18653200 seg_138 1516 18659400 18661000 seg_139 1517 18663000 18664250 seg_140 1518 18689000 18690200 seg_141 1519 18694650 18696250 seg_142 1520 18704800 18705850 seg_143 1521 18814500 18815800 seg_144 1522 18850450 18852300 seg_145 1523 18858250 18862600 seg_146 1524 18865700 18867200 seg_147 1525 18891000 18894600 seg_148 1526 19012650 19013750 seg_149 1527 19038700 19039900 seg_150 1528 19065750 19066850 seg_151 1529 19141200 19142550 seg_152 1530 19307900 19310300 seg_153 1531 19348850 19352250 seg_154 1532 19393250 19401800 seg_155 1533 19415800 19417450 seg_156 1534 19474150 19475400 seg_157 1535 19554750 19556200 seg_158 1536 19560350 19561400 seg_159 1537 19570450 19571550 seg_160 1538 19620350 19621400 seg_161 1539 19638050 19639150 seg_162 1540 19813200 19814750 seg_163 1541 19817600 19819100 seg_164 1542 19879900 19881050 seg_165 1543 19883900 19887350 seg_166 1544 19890300 19891400 seg_167 1545 19894150 19895700 seg_168 1546 19902750 19905650 seg_169 1547 19922300 19923750 seg_170 1548 20019400 20021100 seg_171 1549 20041050 20042600 seg_172 1550 20128750 20130450 seg_173 1551 20288800 20290300 seg_174 1552 20297600 20299550 seg_175 1553 20311300 20312350 seg_176 1554 20341300 20343100 seg_177 1555 20350450 20352350 seg_178 1556 20412250 20413300 seg_179 1557 20427800 20429700 seg_180 1558 20432100 20434300 seg_181 1559 21924250 21925300 seg_182 1560 22051000 22052100 seg_183 1561 22073800 22074800 seg_184 1562 23660850 23662600 seg_185 1563 23774100 23775150 seg_186 1564 24270650 24272400 seg_187 1565 24276700 24278300 seg_188 1566 24285100 24289350 seg_189 1567 24328750 24333600 seg_190 1568 24379500 24384800 seg_191 1569 24483500 24485500 seg_192 1570 24544700 24546050 seg_193 1571 25026650 25045650 seg_194 1572 25046800 25048550 seg_195 1573 31007050 31009050 seg_196 1574 31014200 31015250 seg_197 1575 31022150 31023300 seg_198 1576 37191850 37193450 seg_199 1577 38037000 38038300 seg_200 1578 38078450 38080750 seg_201 1579 38195400 38197000 seg_202 1580 38211800 38213050 seg_203 1581 38475900 38477150 seg_204 1582 38511700 38513450 seg_205 1583 38537300 38539300 seg_206 1584 39061650 39062900 seg_207 1585 39551800 39553100 seg_208 1586 39763900 39765400 seg_209 1587 39775200 39777050 seg_210 1588 40355900 40357500 seg_211 1589 40389550 40391550 seg_212 1590 40597850 40599200 seg_213 1591 40869500 40870650 seg_214 1592 41125350 41126800 seg_215 1593 41167750 41169450 seg_216 1594 41209650 41210900 seg_217 1595 41814600 41816250 seg_218 1596 43831100 43833350 seg_219 1597 43888350 43890300 seg_220 1598 44172850 44174600 seg_221 1599 44538100 44539300 seg_222 1600 45627800 45629350 seg_223 1601 45708500 45709500 seg_224 1602 46263300 46264350 seg_225 1603 46465650 46466700 seg_226 1604 46639450 46641100 seg_227 1605 47125900 47127750 seg_228 1606 47145650 47147250 seg_229 1607 47232600 47233700 seg_230 1608 47382350 47383400 seg_231 1609 47542100 47544050 seg_232 1610 47676000 47677900 seg_233 1611 47981500 47983400 seg_234 1612 48042250 48043650 seg_235 1613 48045350 48046450 seg_236 1614 48051300 48052550 seg_237 1615 48063100 48065000 seg_238 1616 48096650 48098100 seg_239 1617 48155300 48156750 seg_240 1618 48171500 48177300 seg_241 1619 48288050 48289600 seg_242 1620 48475350 48476950 seg_243 1621 48511900 48513550 seg_244 1622 49004850 49005850 seg_245 1623 49420650 49421700 seg_246 1624 49429000 49430200 seg_247 1625 49463400 49464600 seg_248 1626 49517800 49519800 seg_249 1627 49594450 49595600 seg_250 1628 51419250 51421950 seg_251 1629 51423850 51425400 seg_252 1630 51454600 51455900 seg_253 1631 51458450 51460250 seg_254 1632 51798900 51802500 seg_255 1633 51935050 51936300 seg_256 1634 51939700 51941850 seg_257 1635 52543850 52545000 seg_258 1636 52596350 52597600 seg_259 1637 52603150 52604300 seg_260 1638 52673200 52675150 seg_261 1639 52713100 52714950 seg_262 1640 52851450 52852550 seg_263 1641 52854250 52855350 seg_264 1642 52896900 52898050 seg_265 1643 52996700 52998100 seg_266 1644 53188000 53189350 seg_267 1645 53347500 53352900 seg_268 1646 53356450 53357750 seg_269 1647 53360100 53362200 seg_270 1648 53516400 53517800 seg_271 1649 53759850 53761200 seg_272 1650 53823250 53824350 seg_273 1651 53842300 53844450 seg_274 1652 54317850 54320600 seg_275 1653 54386500 54387850 seg_276 1654 54389200 54390400 seg_277 1655 54495250 54496750 seg_278 1656 55040550 55042350 seg_279 1657 55142250 55144000 seg_280 1658 55146600 55147900 seg_281 1659 55209800 55211250 seg_282 1660 55683550 55684650 seg_283 1661 61880850 61882050 seg_284 1662 64771000 64772400 seg_285 1663 67652200 67654900 seg_286 1664 68341700 68343050 seg_287 1665 68353000 68354550 seg_288 1666 68483250 68485150 seg_289 1667 68525100 68526300 seg_290 1668 68836050 68838050 seg_291 1669 68918100 68920050 seg_292 1670 69352950 69354000 seg_293 1671 69697700 69699050 seg_294 1672 70432400 70434300 seg_295 1673 70436000 70437500 seg_296 1674 70474400 70475600 seg_297 1675 70877700 70883450 seg_298 1676 70919900 70923050 seg_299 1677 70926200 70950300 seg_300 1678 70972100 70989450 seg_301 1679 70992300 70994500 seg_302 1680 70997850 70999500 seg_303 1681 71003450 71005550 seg_304 1682 71031900 71034450 seg_305 1683 71094050 71095700 seg_306 1684 71238100 71239150 seg_307 1685 71261650 71263400 seg_308 1686 71319750 71321300 seg_309 1687 71348750 71353050 seg_310 1688 71503150 71504200 seg_311 1689 71512450 71513550 seg_312 1690 71526450 71528800 seg_313 1691 71945800 71946950 seg_314 1692 71953450 71955300 seg_315 1693 73398500 73400100 seg_316 1694 73535100 73536450 seg_317 1695 73638950 73640300 seg_318 1696 73642000 73643200 seg_319 1697 85339200 85340950 seg_320 1698 100106050 100107200 seg_321 1699 100119950 100121600 seg_322 1700 100193650 100195150 seg_323 1701 100471350 100473200 seg_324 1702 100514900 100516350 seg_325 1703 100532400 100533600 seg_326 1704 101800900 101804000 seg_327 1705 102378800 102380350 seg_328 1706 102430600 102432050 seg_329 1707 102530950 102533100 seg_330 1708 102564900 102566400 seg_331 1709 102584350 102585450 seg_332 1710 102861350 102862700 seg_333 1711 102917800 102919350 seg_334 1712 103087250 103088400 seg_335 1713 103166900 103168400 seg_336 1714 103172500 103174800 seg_337 1715 103216000 103218450 seg_338 1716 103230800 103233250 seg_339 1717 103253050 103254100 seg_340 1718 103261650 103262700 seg_341 1719 103301600 103303200 seg_342 1720 103306050 103309200 seg_343 1721 103311200 103312950 seg_344 1722 103314600 103315800 seg_345 1723 103355850 103358850 seg_346 1724 103812100 103813500 seg_347 1725 105065250 105066350 seg_348 1726 105968700 105970600 seg_349 1727 106044350 106046150 seg_350 1728 106482900 106485150 seg_351 1729 106748850 106751050 seg_352 1730 106766500 106768400 seg_353 1731 106839200 106841100 seg_354 1732 106844750 106845950 seg_355 1733 106857050 106858450 seg_356 1734 106984400 106985900 seg_357 1735 107012550 107013950 seg_358 1736 107015700 107021050 seg_359 1737 107067200 107071350 seg_360 1738 107167050 107168350 seg_361 1739 107318400 107320100 seg_362 1740 107680300 107682050 seg_363 1741 107800800 107802650 seg_364 1742 108823900 108825300 seg_365 1743 108842500 108844650 seg_366 1744 109664500 109668200 seg_367 1745 109675200 109677300 seg_368 1746 109681600 109683350 seg_369 1747 109687600 109689250 seg_370 1748 109763200 109764700 seg_371 1749 110037400 110040400 seg_372 1750 110089850 110091400 seg_373 1751 110338150 110339500 seg_374 1752 111326550 111327950 seg_375 1753 113342550 113344100 seg_376 1754 113352150 113353850 seg_377 1755 113418750 113420450 seg_378 1756 113814950 113817950 seg_379 1757 114206400 114207900 seg_380 1758 114467100 114468700 seg_381 1759 114956100 114958000 seg_382 1760 117249800 117250800 seg_383 1761 117862300 117863400 seg_384 1762 117940450 117941800 seg_385 1763 117956850 117963900 seg_386 1764 117965550 117966650 seg_387 1765 118052350 118054150 seg_388 1766 118081300 118083250 seg_389 1767 118109050 118110300 seg_390 1768 118205950 118208800 seg_391 1769 118212900 118215850 seg_392 1770 118282850 118287450 seg_393 1771 118346000 118349200 seg_394 1772 118359850 118363400 seg_395 1773 118366950 118370450 seg_396 1774 118441450 118445300 seg_397 1775 118449700 118451000 seg_398 1776 118457400 118458500 seg_399 1777 118475800 118478400 seg_400 1778 118493600 118495250 seg_401 1779 118496550 118498200 seg_402 1780 118503050 118504750 seg_403 1781 118513250 118514500 seg_404 1782 118869150 118873850 seg_405 1783 119086550 119088100 seg_406 1784 119119400 119121600 seg_407 1785 119123100 119136250 seg_408 1786 119146350 119147850 seg_409 1787 119149100 119157100 seg_410 1788 119467950 119469350 seg_411 1789 119504000 119505500 seg_412 1790 119514900 119515950 seg_413 1791 119865950 119867450 seg_414 1792 120299600 120300600 seg_415 1793 122316650 122320500 seg_416 1794 122402300 122404250 seg_417 1795 123373100 123375050 seg_418 1796 124335350 124337600 seg_419 1797 128781700 128784050 seg_420 1798 128788300 128792400 seg_421 1799 128811850 128813500 seg_422 1800 128829500 128831000 seg_423 1801 128834150 128836250 seg_424 1802 128852750 128855450 seg_425 1803 128996850 128998800 seg_426 1804 129312750 129314600 seg_427 1805 129429500 129430650 seg_428 1806 129518000 129519450 seg_429 1807 129685850 129687000 seg_430 1808 130182350 130183950 seg_431 1809 130192100 130193800 seg_432 1810 130765450 130766550 seg_433 1811 130814550 130815550 seg_434 1812 131217450 131219600 seg_435 1813 131226100 131227550 seg_436 1814 131234500 131238250 seg_437 1815 131552950 131554550 seg_438 1816 131555800 131556900 seg_439 1817 131706550 131707650 seg_440 1818 133307050 133308100 seg_441 1819 133367850 133369000 seg_442 1820 133370100 133372950 seg_443 1821 133751450 133752450 seg_444 1822 133779700 133780700 seg_445 1823 133810300 133811300 seg_446 1824 133937450 133939000 seg_447 1825 133984050 133985200 seg_448 1826 133996850 133998300 seg_449 1827 134096600 134097900 seg_450 1828 134115350 134116650 seg_451 1829 134141750 134143050 seg_452 1830 134144200 134147750 seg_453 1831 134153750 134155600 seg_454 1832 134232350 134234600 seg_455 1833 134262000 134263300 seg_456 1834 134267150 134272000 seg_457 1835 134313200 134319300 seg_458 1836 134322900 134324600 seg_459 1837 134342600 134344200 seg_460 1838 134345900 134351900 seg_461 1839 134368650 134375600 seg_462 1840 134383050 134384100 seg_463 1841 134557050 134558100 seg_464 1842 134567350 134570450 seg_465 1843 134582350 134583400 seg_466 1844 134630300 134631800 seg_467 1845 134725600 134726800 seg_468 1846 134730400 134732000 seg_469 1847 134841450 134843250 seg_470 1848 134974900 134976100 seg_471 1849 135142850 135149600 seg_472 1850 135153750 135158600 seg_473 1851 135164850 135166450 seg_474 1852 135200900 135202500 seg_475 1853 135227100 135229300 seg_476 1854 135230550 135237050 seg_477 1855 135238700 135240650 seg_478 1856 135247650 135253150 seg_479 1857 135255700 135257250 seg_480 1858 135261000 135263500 seg_481 1859 135278300 135279400 seg_482 1860 135280500 135283000 seg_483 1861 135286200 135288850 seg_484 1862 135570450 135571950 seg_485 1863 135573250 135575700 seg_486 1864 135605150 135606400 seg_487 1865 135623250 135624500 seg_488 1866 135635700 135637100 seg_489 1867 135700350 135703200 seg_490 1868 135705250 135706450 seg_491 1869 135736900 135741150 seg_492 1870 136111350 136117550 seg_493 1871 136134350 136135800 seg_494 1872 136507400 136511500 seg_495 1873 136629000 136633450 seg_496 1874 136650650 136652500 seg_497 1875 138637250 138639450 seg_498 1876 138772500 138776000 seg_499 1877 139024650 139025850 seg_500 1878 139053450 139055300 seg_501 1879 143224150 143226300 seg_502 1880 148673150 148680900 seg_503 1881 148682650 148684100 seg_504 1882 148711650 148713850 seg_505 1883 148735200 148736900 seg_506 1884 148805000 148806550 seg_507 1885 148826750 148829150 seg_508 1886 148852950 148862150 seg_509 1887 149108000 149109350 seg_510 1888 149530200 149534000 seg_511 1889 149646300 149649450 seg_512 1890 149650500 149652300 seg_513 1891 149673500 149676800 seg_514 1892 149680400 149683100 seg_515 1893 149691650 149693050 seg_516 1894 150131750 150132800 seg_517 1895 150134250 150137250 seg_518 1896 150159250 150160300 seg_519 1897 150256200 150257200 seg_520 1898 150341400 150347800 seg_521 1899 150394350 150398150 seg_522 1900 150515800 150516800 seg_523 1901 150721650 150722950 seg_524 1902 150765850 150766900 seg_525 1903 150827300 150828750 seg_526 1904 150871800 150872900 seg_527 1905 150911500 150912750 seg_528 1906 150916300 150917600 seg_529 1907 150941700 150943250 seg_530 1908 151095050 151096600 seg_531 1909 151989450 151991100 seg_532 1910 152046300 152047500 seg_533 1911 152051700 152053600 seg_534 1912 152061800 152071500 seg_535 1913 152072750 152074300 seg_536 1914 152076150 152079750 seg_537 1915 152101250 152104800 seg_538 1916 152393100 152402450 seg_539 1917 152522450 152523650 seg_540 1918 152529100 152538150 seg_541 1919 152565900 152567100 seg_542 1920 152664400 152665900 seg_543 1921 152749250 152750350 seg_544 1922 152757900 152759300 seg_545 1923 152786250 152787250 seg_546 1924 152788650 152794100 seg_547 1925 152800850 152804450 seg_548 1926 152814800 152828650 seg_549 1927 152830250 152836300 seg_550 1928 152838450 152845550 seg_551 1929 152868250 152873400 seg_552 1930 152886950 152890650 seg_553 1931 152892700 152894800 seg_554 1932 152896000 152904000 seg_555 1933 152929350 152932250 seg_556 1934 153075300 153076350 seg_557 1935 153078100 153079800 seg_558 1936 153083600 153087450 seg_559 1937 153088800 153098300 seg_560 1938 153118550 153120150 seg_561 1939 153123650 153124700 seg_562 1940 153127450 153132350 seg_563 1941 153150300 153151550 seg_564 1942 153157700 153161200 seg_565 1943 153162600 153164350 seg_566 1944 153438400 153439700 seg_567 1945 153455250 153457100 seg_568 1946 153547800 153558950 seg_569 1947 153829500 153833250 seg_570 1948 153877100 153878700 seg_571 1949 153883050 153884900 seg_572 1950 153886450 153887600 seg_573 1951 153979700 153981100 seg_574 1952 154129300 154130500 seg_575 1953 154214850 154216450 seg_576 1954 154443300 154445000 seg_577 1955 155118300 155119400 seg_578 1956

Table XIV sets forth the hg19 coordinates and SEQ ID NOs, or the SUZ12 strong binding sites identified in K562.

TABLE XIV SUZ12 in K562 SEQ ID start end name NO: 169650 171500 seg_1 1957 373150 374900 seg_2 1958 376150 377150 seg_3 1959 379350 383850 seg_4 1960 385450 391000 seg_5 1961 392750 393800 seg_6 1962 397400 399300 seg_7 1963 419800 421150 seg_8 1964 426250 427400 seg_9 1965 457200 458700 seg_10 1966 605350 606900 seg_11 1967 610200 612700 seg_12 1968 751200 752650 seg_13 1969 754300 755950 seg_14 1970 843900 845100 seg_15 1971 976900 978400 seg_16 1972 989000 993500 seg_17 1973 995100 996500 seg_18 1974 1029100 1031050 seg_19 1975 1240150 1241200 seg_20 1976 1259600 1261050 seg_21 1977 1329250 1330400 seg_22 1978 1392750 1394000 seg_23 1979 1397900 1399150 seg_24 1980 1447300 1450000 seg_25 1981 1464250 1469050 seg_26 1982 1571500 1573550 seg_27 1983 1589950 1591400 seg_28 1984 1666750 1668400 seg_29 1985 1736000 1737000 seg_30 1986 1750100 1751300 seg_31 1987 1776200 1777750 seg_32 1988 2143700 2144900 seg_33 1989 2441800 2442900 seg_34 1990 2455900 2457600 seg_35 1991 2499200 2503800 seg_36 1992 2598050 2601800 seg_37 1993 2608500 2610050 seg_38 1994 2663650 2667050 seg_39 1995 2685100 2686250 seg_40 1996 2710300 2713050 seg_41 1997 2718100 2719250 seg_42 1998 2722300 2723400 seg_43 1999 2985150 2986300 seg_44 2000 3262450 3264450 seg_45 2001 3705150 3706850 seg_46 2002 3718850 3720100 seg_47 2003 3836600 3837850 seg_48 2004 4762000 4763100 seg_49 2005 8433250 8434450 seg_50 2006 9230300 9231800 seg_51 2007 9245050 9246200 seg_52 2008 9275350 9276800 seg_53 2009 9291250 9292250 seg_54 2010 9337400 9338550 seg_55 2011 9372050 9382550 seg_56 2012 9433800 9434800 seg_57 2013 9465900 9467000 seg_58 2014 9732550 9734250 seg_59 2015 9754100 9755600 seg_60 2016 9815800 9817450 seg_61 2017 9861700 9864800 seg_62 2018 9935000 9936000 seg_63 2019 9943250 9944350 seg_64 2020 9982300 9983400 seg_65 2021 10066550 10068450 seg_66 2022 10587800 10589000 seg_67 2023 10995600 10996600 seg_68 2024 11002150 11003400 seg_69 2025 11317250 11318400 seg_70 2026 11671200 11672400 seg_71 2027 11681150 11684100 seg_72 2028 11754000 11755100 seg_73 2029 11778800 11779850 seg_74 2030 12601150 12602900 seg_75 2031 12791300 12794950 seg_76 2032 12799050 12800050 seg_77 2033 12812950 12814100 seg_78 2034 12857600 12858700 seg_79 2035 12897150 12898350 seg_80 2036 12993000 12994200 seg_81 2037 13445800 13446850 seg_82 2038 13503550 13504700 seg_83 2039 13518050 13519350 seg_84 2040 13587150 13589000 seg_85 2041 13804100 13806050 seg_86 2042 13834050 13835850 seg_87 2043 13898100 13899500 seg_88 2044 13955300 13956550 seg_89 2045 14247250 14248400 seg_90 2046 14596250 14597350 seg_91 2047 14958750 14959900 seg_92 2048 15134850 15135950 seg_93 2049 15330250 15331650 seg_94 2050 16488650 16489900 seg_95 2051 16927400 16928750 seg_96 2052 16967100 16968150 seg_97 2053 17047350 17048350 seg_98 2054 17793100 17794100 seg_99 2055 17877100 17879400 seg_100 2056 18001050 18002050 seg_101 2057 18140450 18141600 seg_102 2058 18179450 18180550 seg_103 2059 18232100 18233200 seg_104 2060 18236850 18239450 seg_105 2061 18244700 18245900 seg_106 2062 18442500 18445000 seg_107 2063 18661950 18663150 seg_108 2064 18667450 18668950 seg_109 2065 18889600 18891200 seg_110 2066 18892400 18894300 seg_111 2067 18904350 18905750 seg_112 2068 18931800 18932800 seg_113 2069 19141050 19142200 seg_114 2070 19285300 19286350 seg_115 2071 19307300 19309350 seg_116 2072 19349800 19351800 seg_117 2073 19390850 19391950 seg_118 2074 19395050 19396500 seg_119 2075 19398600 19399850 seg_120 2076 19504100 19505200 seg_121 2077 19602850 19605500 seg_122 2078 19627300 19628350 seg_123 2079 19874700 19875850 seg_124 2080 19904300 19906050 seg_125 2081 20021350 20023050 seg_126 2082 20099150 20100450 seg_127 2083 20129200 20134650 seg_128 2084 20159600 20160600 seg_129 2085 20348600 20349750 seg_130 2086 20366200 20367200 seg_131 2087 21294850 21295950 seg_132 2088 21991750 21992750 seg_133 2089 22180550 22181700 seg_134 2090 22537550 22538650 seg_135 2091 22961950 22963000 seg_136 2092 23093050 23094400 seg_137 2093 23349300 23351100 seg_138 2094 23412800 23413800 seg_139 2095 23519800 23520850 seg_140 2096 23889950 23891000 seg_141 2097 23925150 23926350 seg_142 2098 24147850 24148850 seg_143 2099 24286700 24289050 seg_144 2100 24301450 24303550 seg_145 2101 24328700 24333250 seg_146 2102 24379450 24382100 seg_147 2103 24408550 24410100 seg_148 2104 24504450 24505550 seg_149 2105 24574200 24575400 seg_150 2106 24644850 24646050 seg_151 2107 25025650 25045000 seg_152 2108 25046850 25048300 seg_153 2109 25118300 25119350 seg_154 2110 25302550 25303800 seg_155 2111 26860050 26861050 seg_156 2112 28053850 28054900 seg_157 2113 30325950 30328550 seg_158 2114 30797500 30798500 seg_159 2115 30955050 30956300 seg_160 2116 30992350 30993350 seg_161 2117 31010750 31012250 seg_162 2118 31691100 31692100 seg_163 2119 33817650 33818700 seg_164 2120 35897350 35898350 seg_165 2121 37016650 37018000 seg_166 2122 37064150 37065200 seg_167 2123 37351000 37352100 seg_168 2124 37733800 37734850 seg_169 2125 38078900 38081100 seg_170 2126 38663050 38664250 seg_171 2127 38778550 38779750 seg_172 2128 39021100 39022250 seg_173 2129 39371550 39372650 seg_174 2130 39382850 39383850 seg_175 2131 39413850 39415500 seg_176 2132 39458100 39459400 seg_177 2133 39685600 39687150 seg_178 2134 39740700 39741800 seg_179 2135 39763700 39765450 seg_180 2136 39843400 39844400 seg_181 2137 39873150 39874450 seg_182 2138 40027900 40029300 seg_183 2139 40149800 40151100 seg_184 2140 40263700 40265000 seg_185 2141 40359650 40360750 seg_186 2142 40375050 40376700 seg_187 2143 40390200 40391900 seg_188 2144 40602000 40603200 seg_189 2145 40828200 40829350 seg_190 2146 40890100 40891600 seg_191 2147 41112400 41113550 seg_192 2148 41306350 41307400 seg_193 2149 41958050 41959450 seg_194 2150 41983850 41985000 seg_195 2151 42505050 42506050 seg_196 2152 43471800 43472900 seg_197 2153 43830050 43831700 seg_198 2154 43964400 43965900 seg_199 2155 44203200 44204350 seg_200 2156 44997500 44998600 seg_201 2157 46464100 46465450 seg_202 2158 47127000 47128150 seg_203 2159 47145550 47146800 seg_204 2160 47175050 47176550 seg_205 2161 47363250 47364350 seg_206 2162 47371600 47373400 seg_207 2163 47476800 47478350 seg_208 2164 47595750 47596900 seg_209 2165 47661850 47663050 seg_210 2166 47984500 47985650 seg_211 2167 48165350 48166500 seg_212 2168 48175100 48176600 seg_213 2169 48193350 48194400 seg_214 2170 48199400 48200550 seg_215 2171 48240000 48241200 seg_216 2172 48828300 48829300 seg_217 2173 48963250 48964250 seg_218 2174 49029700 49030700 seg_219 2175 49068450 49069750 seg_220 2176 49074200 49075450 seg_221 2177 49104450 49105650 seg_222 2178 49409000 49410150 seg_223 2179 49420300 49421700 seg_224 2180 49551450 49552750 seg_225 2181 49906350 49907600 seg_226 2182 49917850 49919100 seg_227 2183 50213900 50215200 seg_228 2184 50450650 50451850 seg_229 2185 50555600 50557750 seg_230 2186 50694600 50695650 seg_231 2187 50918150 50919200 seg_232 2188 51126600 51128150 seg_233 2189 51316600 51317600 seg_234 2190 51419250 51420500 seg_235 2191 51424500 51426000 seg_236 2192 51452900 51456150 seg_237 2193 51458700 51460100 seg_238 2194 51545600 51546650 seg_239 2195 51800050 51801050 seg_240 2196 51805500 51812400 seg_241 2197 51929300 51932300 seg_242 2198 51935000 51936100 seg_243 2199 51939150 51940750 seg_244 2200 52239900 52241050 seg_245 2201 52267050 52268250 seg_246 2202 52496400 52497400 seg_247 2203 52526900 52528150 seg_248 2204 52530600 52532500 seg_249 2205 52543750 52545000 seg_250 2206 52692900 52694100 seg_251 2207 52705000 52706750 seg_252 2208 52755450 52756450 seg_253 2209 52809850 52811650 seg_254 2210 52919850 52921300 seg_255 2211 52925850 52927100 seg_256 2212 52989600 52990850 seg_257 2213 52994300 52995300 seg_258 2214 53069800 53070900 seg_259 2215 53284450 53286250 seg_260 2216 53329950 53331050 seg_261 2217 53348300 53351800 seg_262 2218 53360200 53362250 seg_263 2219 53510800 53511850 seg_264 2220 53893900 53895050 seg_265 2221 53947550 53948650 seg_266 2222 54070050 54071100 seg_267 2223 54221650 54222700 seg_268 2224 54315000 54316050 seg_269 2225 54386700 54387800 seg_270 2226 54521250 54522900 seg_271 2227 54776750 54777850 seg_272 2228 55026400 55027550 seg_273 2229 55142950 55144000 seg_274 2230 55195550 55197050 seg_275 2231 56029500 56030800 seg_276 2232 56625450 56626500 seg_277 2233 56787300 56788350 seg_278 2234 57633650 57634750 seg_279 2235 58499950 58501350 seg_280 2236 58556450 58557650 seg_281 2237 58564350 58569550 seg_282 2238 58572250 58575150 seg_283 2239 58576450 58579850 seg_284 2240 61687500 61693950 seg_285 2241 61696500 61697900 seg_286 2242 61705150 61707200 seg_287 2243 61709550 61713800 seg_288 2244 61715250 61717700 seg_289 2245 61718950 61720050 seg_290 2246 61722850 61725350 seg_291 2247 61735200 61737150 seg_292 2248 61745250 61748350 seg_293 2249 61759400 61765200 seg_294 2250 61767100 61768400 seg_295 2251 61771650 61773500 seg_296 2252 61812750 61816700 seg_297 2253 61825850 61827800 seg_298 2254 61833050 61834950 seg_299 2255 61836400 61840450 seg_300 2256 61848600 61850050 seg_301 2257 61871000 61872850 seg_302 2258 61880650 61882600 seg_303 2259 62373750 62375100 seg_304 2260 62381350 62382900 seg_305 2261 62967650 62969200 seg_306 2262 63267250 63268250 seg_307 2263 63412200 63413300 seg_308 2264 64138750 64139800 seg_309 2265 64770000 64772700 seg_310 2266 66313800 66314950 seg_311 2267 66763900 66766950 seg_312 2268 67871900 67872900 seg_313 2269 68048550 68051950 seg_314 2270 68132200 68133300 seg_315 2271 68233300 68234300 seg_316 2272 68270750 68271850 seg_317 2273 68406000 68407300 seg_318 2274 68423100 68425000 seg_319 2275 68482450 68484700 seg_320 2276 68524950 68526550 seg_321 2277 68836650 68837650 seg_322 2278 69354600 69355600 seg_323 2279 69394450 69395900 seg_324 2280 69663950 69665850 seg_325 2281 70013100 70014100 seg_326 2282 70368600 70369750 seg_327 2283 70435950 70436950 seg_328 2284 70443150 70444550 seg_329 2285 70839050 70840250 seg_330 2286 70877750 70883200 seg_331 2287 70920450 70921550 seg_332 2288 70931300 70944400 seg_333 2289 70945900 70947000 seg_334 2290 70948700 70950550 seg_335 2291 70973450 70990950 seg_336 2292 71033300 71034650 seg_337 2293 71091950 71093750 seg_338 2294 71130200 71132050 seg_339 2295 71237900 71239300 seg_340 2296 71241400 71242500 seg_341 2297 71279100 71280300 seg_342 2298 71350200 71352700 seg_343 2299 71364150 71365850 seg_344 2300 71525750 71529400 seg_345 2301 71800550 71801550 seg_346 2302 71951850 71953000 seg_347 2303 72011750 72013700 seg_348 2304 72136450 72138350 seg_349 2305 72146600 72148500 seg_350 2306 72157050 72158200 seg_351 2307 72666800 72668350 seg_352 2308 73134450 73135450 seg_353 2309 73397650 73399200 seg_354 2310 73498350 73499350 seg_355 2311 73642400 73643800 seg_356 2312 74055400 74056550 seg_357 2313 77165200 77166850 seg_358 2314 77223450 77224850 seg_359 2315 77296400 77297850 seg_360 2316 78307850 78308850 seg_361 2317 79181150 79182150 seg_362 2318 79277400 79278700 seg_363 2319 79717550 79718700 seg_364 2320 80106100 80107250 seg_365 2321 80258650 80259800 seg_366 2322 83187600 83188750 seg_367 2323 85105500 85106600 seg_368 2324 85317700 85318700 seg_369 2325 86337800 86339100 seg_370 2326 88482200 88483250 seg_371 2327 89470750 89472100 seg_372 2328 91035500 91036850 seg_373 2329 93266850 93268000 seg_374 2330 99556100 99557150 seg_375 2331 99830600 99831700 seg_376 2332 99891050 99892300 seg_377 2333 99934950 99936050 seg_378 2334 99999850 100001500 seg_379 2335 100334000 100335900 seg_380 2336 100509100 100510450 seg_381 2337 100672350 100673500 seg_382 2338 100744750 100745800 seg_383 2339 100793500 100794650 seg_384 2340 100852500 100853550 seg_385 2341 100867500 100868650 seg_386 2342 101564000 101565000 seg_387 2343 101730800 101732700 seg_388 2344 101770350 101771700 seg_389 2345 102529150 102533650 seg_390 2346 102564750 102566250 seg_391 2347 102585450 102586700 seg_392 2348 102840700 102841750 seg_393 2349 102918500 102920100 seg_394 2350 102982800 102984450 seg_395 2351 103086000 103088000 seg_396 2352 103172500 103174100 seg_397 2353 103216950 103218150 seg_398 2354 103231050 103232850 seg_399 2355 103241500 103242650 seg_400 2356 103305100 103306500 seg_401 2357 103355950 103358450 seg_402 2358 103526000 103527100 seg_403 2359 103809050 103810850 seg_404 2360 105065050 105067850 seg_405 2361 105960300 105961850 seg_406 2362 106047050 106048050 seg_407 2363 106172400 106173500 seg_408 2364 106686250 106687400 seg_499 2365 106748850 106751450 seg_410 2366 106766900 106768200 seg_411 2367 106793100 106794250 seg_412 2368 106843800 106846550 seg_413 2369 106991800 106993500 seg_414 2370 107018250 107019350 seg_415 2371 107067850 107070850 seg_416 2372 107223950 107225250 seg_417 2373 107509250 107510600 seg_418 2374 107621250 107622550 seg_419 2375 107964200 107965250 seg_420 2376 107975000 107976700 seg_421 2377 108199300 108200550 seg_422 2378 108296850 108298000 seg_423 2379 108674800 108676200 seg_424 2380 108703300 108705200 seg_425 2381 108793550 108795100 seg_426 2382 108811600 108812750 seg_427 2383 108842800 108843800 seg_428 2384 109133400 109135000 seg_429 2385 109247900 109249000 seg_430 2386 109686900 109688500 seg_431 2387 110038450 110040100 seg_432 2388 111148500 111149550 seg_433 2389 111323950 111326100 seg_434 2390 111377450 111378600 seg_435 2391 111877350 111878350 seg_436 2392 112067850 112068950 seg_437 2393 113251050 113252200 seg_438 2394 113815000 113819700 seg_439 2395 114795000 114796050 seg_440 2396 114954500 114955550 seg_441 2397 114957400 114958700 seg_442 2398 115997450 115998650 seg_443 2399 117249550 117251250 seg_444 2400 117349200 117350550 seg_445 2401 117956850 117960550 seg_446 2402 118109900 118111100 seg_447 2403 118206800 118209350 seg_448 2404 118214300 118215550 seg_449 2405 118240400 118241500 seg_450 2406 118283750 118285900 seg_451 2407 118367150 118368400 seg_452 2408 118532900 118534700 seg_453 2409 118552150 118553350 seg_454 2410 118636600 118637750 seg_455 2411 118868550 118869800 seg_456 2412 119123450 119126250 seg_457 2413 119128250 119130300 seg_458 2414 119133050 119135500 seg_459 2415 119147300 119149300 seg_460 2416 119152200 119153950 seg_461 2417 119443650 119445500 seg_462 2418 119503950 119505200 seg_463 2419 119626450 119627500 seg_464 2420 120007900 120009150 seg_465 2421 120122250 120123600 seg_466 2422 120742050 120743100 seg_467 2423 121110750 121111750 seg_468 2424 121201700 121202750 seg_469 2425 122004000 122005250 seg_470 2426 122317650 122321300 seg_471 2427 122323700 122324850 seg_472 2428 124416550 124417650 seg_473 2429 126645100 126646650 seg_474 2430 127166250 127167250 seg_475 2431 127302450 127303900 seg_476 2432 128393800 128394950 seg_477 2433 128756950 128758000 seg_478 2434 128781850 128783650 seg_479 2435 128787750 128789650 seg_480 2436 128812100 128813800 seg_481 2437 128822550 128823650 seg_482 2438 128833600 128834700 seg_483 2439 128882700 128883950 seg_484 2440 129429400 129430750 seg_485 2441 129444800 129445800 seg_486 2442 129517950 129519000 seg_487 2443 129598850 129599900 seg_488 2444 129617200 129618900 seg_489 2445 129671600 129672750 seg_490 2446 130182550 130183750 seg_491 2447 130211050 130212100 seg_492 2448 130215900 130218550 seg_493 2449 130409100 130410150 seg_494 2450 130804750 130805950 seg_495 2451 131351450 131352650 seg_496 2452 131556050 131558450 seg_497 2453 131752700 131753800 seg_498 2454 132008150 132009150 seg_499 2455 132086850 132088300 seg_500 2456 132263450 132264500 seg_501 2457 133370100 133372850 seg_502 2458 133384600 133385600 seg_503 2459 133682650 133684050 seg_504 2460 134003650 134004750 seg_505 2461 134133250 134134300 seg_506 2462 134141600 134142800 seg_507 2463 134233350 134234550 seg_508 2464 134280300 134282050 seg_509 2465 134314000 134315000 seg_510 2466 134346900 134347900 seg_511 2467 134349000 134350350 seg_512 2468 134358450 134359550 seg_513 2469 134368700 134369700 seg_514 2470 134370750 134373750 seg_515 2471 134478200 134479400 seg_516 2472 134512850 134514000 seg_517 2473 134555850 134556850 seg_518 2474 134566100 134571950 seg_519 2475 134731350 134732350 seg_520 2476 134753150 134754200 seg_521 2477 134775800 134776800 seg_522 2478 134871500 134872550 seg_523 2479 134888100 134889150 seg_524 2480 134931900 134933650 seg_525 2481 134947700 134950650 seg_526 2482 134998700 134999900 seg_527 2483 135033500 135035000 seg_528 2484 135138100 135139300 seg_529 2485 135141350 135147300 seg_530 2486 135212600 135213950 seg_531 2487 135228300 135230300 seg_532 2488 135233600 135234900 seg_533 2489 135250050 135251600 seg_534 2490 135436600 135438050 seg_535 2491 135572450 135573650 seg_536 2492 135634450 135636250 seg_537 2493 135736550 135737900 seg_538 2494 135741150 135742750 seg_539 2495 135906100 135907150 seg_540 2496 136114400 136117300 seg_541 2497 136132050 136133500 seg_542 2498 136318450 136319900 seg_543 2499 136507450 136511100 seg_544 2500 136628850 136633350 seg_545 2501 136650850 136652450 seg_546 2502 137064300 137065450 seg_547 2503 138313850 138315100 seg_548 2504 138501150 138502400 seg_549 2505 138689350 138690400 seg_550 2506 138772800 138775400 seg_551 2507 139015500 139016750 seg_552 2508 139172400 139174100 seg_553 2509 139253700 139254950 seg_554 2510 139584250 139586100 seg_555 2511 139589450 139593950 seg_556 2512 140096200 140097500 seg_557 2513 140130900 140131900 seg_558 2514 143215950 143217150 seg_559 2515 147095200 147096350 seg_560 2516 147627750 147628750 seg_561 2517 147670600 147671600 seg_562 2518 148425850 148426900 seg_563 2519 148432950 148434000 seg_564 2520 148552100 148554200 seg_565 2521 148640200 148641350 seg_566 2522 148673650 148678650 seg_567 2523 148679900 148684000 seg_568 2524 148712800 148714250 seg_569 2525 148749000 148750600 seg_570 2526 148752850 148753850 seg_571 2527 148816200 148817450 seg_572 2528 148848550 148851050 seg_573 2529 148853750 148858950 seg_574 2530 148885600 148886800 seg_575 2531 149087550 149088750 seg_576 2532 149221300 149222500 seg_577 2533 149326200 149327250 seg_578 2534 149527800 149533900 seg_579 2535 149646250 149648200 seg_580 2536 149670700 149671900 seg_581 2537 149681150 149683750 seg_582 2538 149715600 149716650 seg_583 2539 150103250 150104600 seg_584 2540 150133850 150135550 seg_585 2541 150137200 150138250 seg_586 2542 150140550 150141850 seg_587 2543 150166150 150167250 seg_588 2544 150188550 150189700 seg_589 2545 150342250 150347350 seg_590 2546 150395650 150397300 seg_591 2547 150554150 150555950 seg_592 2548 150565200 150566300 seg_593 2549 150903100 150904100 seg_594 2550 150934500 150935550 seg_595 2551 151097500 151098700 seg_596 2552 151891100 151892300 seg_597 2553 151910750 151912800 seg_598 2554 151973850 151975150 seg_599 2555 152044600 152046350 seg_600 2556 152049050 152050250 seg_601 2557 152051700 152054800 seg_602 2558 152057500 152058500 seg_603 2559 152061950 152063850 seg_604 2560 152065900 152071400 seg_605 2561 152076500 152078400 seg_606 2562 152096400 152098350 seg_607 2563 152101500 152102750 seg_608 2564 152155100 152156400 seg_609 2565 152346450 152347600 seg_610 2566 152349600 152351300 seg_611 2567 152392250 152393600 seg_612 2568 152397400 152399350 seg_613 2569 152530950 152538400 seg_614 2570 152639750 152640900 seg_615 2571 152662500 152664500 seg_616 2572 152695700 152696750 seg_617 2573 152757650 152760600 seg_618 2574 152773950 152775950 seg_619 2575 152789000 152790950 seg_620 2576 152792050 152797450 seg_621 2577 152801800 152804350 seg_622 2578 152811300 152813150 seg_623 2579 152815500 152817200 seg_624 2580 152818800 152828200 seg_625 2581 152831650 152837100 seg_626 2582 152839000 152842300 seg_627 2583 152870900 152872850 seg_628 2584 152875300 152879100 seg_629 2585 152887500 152889300 seg_630 2586 152891850 152893950 seg_631 2587 152896800 152900700 seg_632 2588 152903550 152905450 seg_633 2589 152908450 152909650 seg_634 2590 153070100 153072100 seg_635 2591 153075150 153076450 seg_636 2592 153078150 153079950 seg_637 2593 153089000 153091450 seg_638 2594 153093650 153097850 seg_639 2595 153123550 153131800 seg_640 2596 153133350 153135150 seg_641 2597 153150200 153151550 seg_642 2598 153157550 153159050 seg_643 2599 153199600 153200600 seg_644 2600 153405550 153406900 seg_645 2601 153409000 153412050 seg_646 2602 153423450 153426400 seg_647 2603 153438400 153439900 seg_648 2604 153447400 153449250 seg_649 2605 153454750 153456450 seg_650 2606 153460750 153463050 seg_651 2607 153477600 153479200 seg_652 2608 153481700 153485800 seg_653 2609 153498150 153500900 seg_654 2610 153551150 153553600 seg_655 2611 153559500 153561300 seg_656 2612 153563100 153564150 seg_657 2613 153604800 153605900 seg_658 2614 153617600 153619700 seg_659 2615 153803300 153804700 seg_660 2616 153827800 153828850 seg_661 2617 153830300 153833450 seg_662 2618 155235050 155236450 seg_663 2619 155245550 155247000 seg_664 2620 155253000 155254000 seg_665 2621 155259200 155260550 seg_666 2622

Table XV sets forth the hg19 coordinates and SEQ NOs. for the strong EZH2 binding sites identified in GM12878 cells.

TABLE XV EZH2 in GM12878 SEQ ID start end name NO: 334650 336100 seg_1 2623 1330550 1331800 seg_2 2624 1610000 1611450 seg_3 2625 1639800 1641400 seg_4 2626 2500300 2501650 seg_5 2627 2730100 2731700 seg_6 2628 3728950 3730750 seg_7 2629 7001450 7003250 seg_8 2630 7066750 7067800 seg_9 2631 7247600 7248900 seg_10 2632 8007900 8008900 seg_11 2633 8706300 8707500 seg_12 2634 8796200 8797750 seg_13 2635 9754800 9756400 seg_14 2636 10123700 10128400 seg_15 2637 10587050 10589450 seg_16 2638 11777450 11778850 seg_17 2639 11807750 11809050 seg_18 2640 12328750 12329950 seg_19 2641 12511300 12512400 seg_20 2642 12789700 12791650 seg_21 2643 12861500 12862950 seg_22 2644 12907600 12908700 seg_23 2645 13002150 13005550 seg_24 2646 13022550 13023650 seg_25 2647 13104600 13106550 seg_26 2648 13140400 13141450 seg_27 2649 13275200 13276500 seg_28 2650 13400400 13401500 seg_29 2651 13690350 13691400 seg_30 2652 13769950 13771750 seg_31 2653 13861350 13862450 seg_32 2654 13954750 13956950 seg_33 2655 14044850 14046750 seg_34 2656 15161350 15162400 seg_35 2657 15221450 15222600 seg_36 2658 15366600 15367950 seg_37 2659 15635900 15637200 seg_38 2660 15661250 15663050 seg_39 2661 15691700 15692750 seg_40 2662 15870450 15871500 seg_41 2663 15873100 15875050 seg_42 2664 16038450 16039750 seg_43 2665 16042200 16043200 seg_44 2666 16728700 16730200 seg_45 2667 16900250 16901750 seg_46 2668 17016300 17017600 seg_47 2669 17092400 17093800 seg_48 2670 17395100 17396300 seg_49 2671 17502900 17504050 seg_50 2672 17784350 17785350 seg_51 2673 17814350 17815500 seg_52 2674 18371700 18372700 seg_53 2675 18873500 18875100 seg_54 2676 19140800 19142750 seg_55 2677 20313350 20314350 seg_56 2678 21392500 21393700 seg_57 2679 21456000 21457750 seg_58 2680 22244450 22245550 seg_59 2681 22543750 22544950 seg_60 2682 23349400 23350400 seg_61 2683 24071600 24072950 seg_62 2684 24163650 24165150 seg_63 2685 24664100 24665300 seg_64 2686 25024050 25042800 seg_65 2687 29296100 29297200 seg_66 2688 29464050 29465100 seg_67 2689 29572800 29574700 seg_68 2690 30201850 30203000 seg_69 2691 30358350 30359600 seg_70 2692 30553550 30554600 seg_71 2693 30731150 30732450 seg_72 2694 30753250 30754400 seg_73 2695 30989450 30990650 seg_74 2696 31188900 31190050 seg_75 2697 31789800 31791200 seg_76 2698 32372400 32373550 seg_77 2699 32690150 32691150 seg_78 2700 37222250 37223300 seg_79 2701 37645650 37647450 seg_80 2702 37765500 37766650 seg_81 2703 38135850 38136950 seg_82 2704 38537450 38538750 seg_83 2705 39511450 39512600 seg_84 2706 39546900 39548650 seg_85 2707 39634900 39635950 seg_86 2708 39871150 39873000 seg_87 2709 40265250 40266350 seg_88 2710 41095400 41096450 seg_89 2711 41209250 41211000 seg_90 2712 41579300 41581500 seg_91 2713 43208150 43209200 seg_92 2714 45627750 45630900 seg_93 2715 45708550 45711000 seg_94 2716 46497450 46498550 seg_95 2717 46692050 46693500 seg_96 2718 46772150 46774250 seg_97 2719 46819250 46820950 seg_98 2720 46839750 46841250 seg_99 2721 50489150 50490250 seg_100 2722 53349050 53352550 seg_101 2723 53356550 53357650 seg_102 2724 53467000 53468050 seg_103 2725 53659750 53660850 seg_104 2726 53677550 53678650 seg_105 2727 56267800 56269150 seg_106 2728 61838500 61840400 seg_107 2729 62599850 62601050 seg_108 2730 62906550 62907850 seg_109 2731 64255700 64256850 seg_110 2732 64754100 64755650 seg_111 2733 64801300 64802950 seg_112 2734 68049150 68050700 seg_113 2735 68230350 68231550 seg_114 2736 68392000 68393100 seg_115 2737 68607150 68608150 seg_116 2738 68725350 68726600 seg_117 2739 69416400 69418200 seg_118 2740 69555900 69556900 seg_119 2741 69663400 69665750 seg_120 2742 69690000 69691650 seg_121 2743 71320100 71321750 seg_122 2744 71351100 71353000 seg_123 2745 71495000 71496100 seg_124 2746 71523650 71529700 seg_125 2747 71833400 71834600 seg_126 2748 73639250 73642650 seg_127 2749 78177750 78179500 seg_128 2750 78196450 78197450 seg_129 2751 78211700 78214250 seg_130 2752 78408600 78409850 seg_131 2753 78413000 78414000 seg_132 2754 78416550 78417950 seg_133 2755 78513750 78515600 seg_134 2756 80385100 80386100 seg_135 2757 82723300 82724450 seg_136 2758 88458350 88460200 seg_137 2759 91034350 91035850 seg_138 2760 96703000 96704200 seg_139 2761 99622650 99623950 seg_140 2762 99666250 99668550 seg_141 2763 99880550 99881650 seg_142 2764 99985450 99986650 seg_143 2765 102632100 102633150 seg_144 2766 102942900 102943900 seg_145 2767 105218650 105219800 seg_146 2768 105938200 105940150 seg_147 2769 105968900 105969900 seg_148 2770 106044700 106046300 seg_149 2771 106117050 106118200 seg_150 2772 106691800 106694950 seg_151 2773 106750650 106751900 seg_152 2774 107067250 107070800 seg_153 2775 107314500 107315550 seg_154 2776 107494550 107495800 seg_155 2777 107670350 107671350 seg_156 2778 108728500 108730000 seg_157 2779 109388700 109390200 seg_158 2780 109606250 109607300 seg_159 2781 109634900 109636050 seg_160 2782 109693150 109694700 seg_161 2783 109938700 109940350 seg_162 2784 110094600 110096000 seg_163 2785 110955050 110956250 seg_164 2786 111165850 111167200 seg_165 2787 111431200 111432300 seg_166 2788 111921950 111923200 seg_167 2789 112094000 112095700 seg_168 2790 114642350 114643450 seg_169 2791 117505350 117506550 seg_170 2792 117661700 117662750 seg_171 2793 117957150 117960300 seg_172 2794 117985600 117986600 seg_173 2795 118109100 118110500 seg_174 2796 119124200 119126100 seg_175 2797 119130600 119136250 seg_176 2798 119149750 119150850 seg_177 2799 119283750 119285050 seg_178 2800 119443250 119445250 seg_179 2801 119475500 119476550 seg_180 2802 120440750 120442950 seg_181 2803 120630700 120631700 seg_182 2804 124337400 124339100 seg_183 2805 125673400 125674600 seg_184 2806 128265000 128266000 seg_185 2807 129114500 129116250 seg_186 2808 129398550 129399700 seg_187 2809 129750050 129751050 seg_188 2810 131866700 131867750 seg_189 2811 132547800 132548950 seg_190 2812 133307500 133308850 seg_191 2813 133603350 133604800 seg_192 2814 133681150 133683450 seg_193 2815 133684650 133685700 seg_194 2816 134491550 134493250 seg_195 2817 135228150 135229350 seg_196 2818 135231600 135232650 seg_197 2819 136114000 136117750 seg_198 2820 136133300 136135150 seg_199 2821 136507800 136510950 seg_200 2822 136650000 136652650 seg_201 2823 138275750 138278250 seg_202 2824 138285450 138287700 seg_203 2825 139172250 139173500 seg_204 2826 139583350 139585350 seg_205 2827 139847900 139849150 seg_206 2828 147582000 147584900 seg_207 2829 148958200 148959900 seg_208 2830 149394250 149395700 seg_209 2831 149529400 149535200 seg_210 2832 150315200 150316600 seg_211 2833 150345300 150346350 seg_212 2834 152910650 152911850 seg_213 2835 153094250 153095900 seg_214 2836 153097200 153098250 seg_215 2837

Each PRC2 strong site or the paRNA(s) associated with each PRC2 strong site is a candidate drug target against with antisense oligonucleotides (ASO) can be designed.

PRC2-associated RNAs were called by analyzing RNA-seq datasets for the corresponding cell lines (wgEncodeEH000187, wgEncodeEH000170, wgEncodeEH000182) and identifying those that overlap the PRC2 site in either orientation by at least 1 base pair.

Again, the PRC2 site-associated RNAs can be noncoding (long noncoding RNA, lncRNA) or occasionally part of a coding mRNA; for simplicity, we will discuss them together as polycomb-associated RNAs (paRNAs). In K562 cells, there are 1275 paRNAs associated with the EZH2 strong sites (Table XVI), 1317 paRNAs associated with strong SUZ12 sites (Table XVII), In GM12878 cells, there are 503 paRNAs associated with the EZH2 strong sites (Table XVIII), Previously annotated RNAs were given a specific ENSEMBL ID in Tables XVI-XVIII (e.g., ENST00000433425.1).

Shown in the following Tables XVI-XVIII are (in column order): Transcript ID number (Ensemble nomenclature); SIN (SEQ NO:); START and STOP, the Start and stop base numbers (coordinates) on the X-chromosome; STRAND, the strand of the X-chromosome (+, −); SUZ12_ID or EZH2_D, the segment number with which the paRNA is associated; EZH2_START and EZH2_END or SUZ_START and SUZ_END, the start and end base numbers of the segment on the X chr; NEAREST GENE, the name of the closest annotated gene; DISEASE GENE; the name of the closest disease gene. In the sequence listing submitted herewith, the transcripts are represented in DNA sequences; replacement of the “T” nucleotides with “U” would render the original RNA sequence.

TABLE XVI paRNAs associated with EZH2 STRONG sites in K562 cells Transcript ID SIN: Start Stop Strand Ezh2 ID Ezh2 Start Ezh2 End Nearest gene Disease gene ENST00000334060.3 2838 585079 620146 + seg_8 610100 614650 SHOX OA1 = GPR143 ENST00000381575.1 2839 591542 620146 + seg_8 610100 614650 SHOX OA1 = GPR143 ENST00000381566.1 2840 1317790 1331527 − seg_20 1324000 1325900 CRLF2 OA1 = GPR143 ENST00000381567.3 2841 1314890 1331527 − seg_20 1324000 1325900 CRLF2 OA1 = GPR143 ENST00000467626.1 2842 1314894 1331616 − seg_20 1324000 1325900 CRLF2 OA1 = GPR143 ENST00000400841.2 2843 1314894 1331530 − seg_20 1324000 1325900 CRLF2 OA1 = GPR143 ENST00000486791.1 2844 1387738 1428827 + seg_22 1392500 1394100 CSF2RA OA1 = GPR143 ENST00000381524.3 2845 1387701 1429274 + seg_22 1392500 1394100 CSF2RA OA1 = GPR143 ENST00000412290.1 2846 1387711 1413288 + seg_22 1392500 1394100 CSF2RA OA1 = GPR143 ENST00000501036.2 2847 1387693 1428828 + seg_22 1392500 1394100 CSF2RA OA1 = GPR143 ENST00000381529.3 2848 1387693 1428815 + seg_22 1392500 1394100 CSF2RA OA1 = GPR143 ENST00000361536.3 2849 1387693 1428828 + seg_22 1392500 1394100 CSF2RA OA1 = GPR143 ENST00000355432.3 2850 1387738 1428827 + seg_22 1392500 1394100 CSF2RA OA1 = GPR143 ENST00000355805.2 2851 1387738 1428827 + seg_22 1392500 1394100 CSF2RA OA1 = GPR143 ENST00000419094.1 2852 1387723 1409320 + seg_22 1392500 1394100 CSF2RA OA1 = GPR143 ENST00000493312.1 2853 1387707 1419436 + seg_22 1392500 1394100 CSF2RA OA1 = GPR143 ENST00000381507.4 2854 1387693 1428828 + seg_22 1392500 1394100 CSF2RA OA1 = GPR143 ENST00000381509.3 2855 1387725 1424834 + seg_22 1392500 1394100 CSF2RA OA1 = GPR143 ENST00000494969.1 2856 1387725 1428815 + seg_22 1392500 1394100 CSF2RA OA1 = GPR143 ENST00000432318.2 2857 1387693 1428828 + seg_22 1392500 1394100 CSF2RA OA1 = GPR143 ENST00000481245.1 2858 1387728 1401113 + seg_22 1392500 1394100 CSF2RA OA1 = GPR143 ENST00000477940.1 2859 1404545 1407533 + seg_23 1403850 1405100 CSF2RA OA1 = GPR143 ENST00000486791.1 2860 1387738 1428827 + seg_23 1403850 1405100 CSF2RA OA1 = GPR143 ENST00000381500.1 2861 1401579 1428531 + seg_23 1403850 1405100 CSF2RA OA1 = GPR143 ENST00000381524.3 2862 1387701 1429274 + seg_23 1403850 1405100 CSF2RA OA1 = GPR143 ENST00000417535.2 2863 1401571 1428828 + seg_23 1403850 1405100 CSF2RA OA1 = GPR143 ENST00000412290.1 2864 1387711 1413288 + seg_23 1403850 1405100 CSF2RA OA1 = GPR143 ENST00000501036.2 2865 1387693 1428828 + seg_23 1403850 1405100 CSF2RA OA1 = GPR143 ENST00000381529.3 2866 1387693 1428815 + seg_23 1403850 1405100 CSF2RA OA1 = GPR143 ENST00000361536.3 2867 1387693 1428828 + seg_23 1403850 1405100 CSF2RA OA1 = GPR143 ENST00000355432.3 2868 1387738 1428827 + seg_23 1403850 1405100 CSF2RA OA1 = GPR143 ENST00000355805.2 2869 1387738 1428827 + seg_23 1403850 1405100 CSF2RA OA1 = GPR143 ENST00000419094.1 2870 1387723 1409320 + seg_23 1403850 1405100 CSF2RA OA1 = GPR143 ENST00000493312.1 2871 1387707 1419436 + seg_23 1403850 1405100 CSF2RA OA1 = GPR143 ENST00000381507.4 2872 1387693 1428828 + seg_23 1403850 1405100 CSF2RA OA1 = GPR143 ENST00000381509.3 2873 1387725 1424834 + seg_23 1403850 1405100 CSF2RA OA1 = GPR143 ENST00000494969.1 2874 1387725 1428815 + seg_23 1403850 1405100 CSF2RA OA1 = GPR143 ENST00000432318.2 2875 1387693 1428828 + seg_23 1403850 1405100 CSF2RA OA1 = GPR143 ENST00000381469.2 2876 1460659 1501358 + seg_24 1460050 1461400 IL3RA OA1 = GPR143 ENST00000331035.4 2877 1455509 1501578 + seg_24 1460050 1461400 IL3RA OA1 = GPR143 ENST00000432757.1 2878 1455689 1475224 + seg_24 1460050 1461400 IL3RA OA1 = GPR143 ENST00000381469.2 2879 1460659 1501358 + seg_25 1464650 1468000 IL3RA OA1 = GPR143 ENST00000331035.4 2880 1455509 1501578 + seg_25 1464650 1468000 IL3RA OA1 = GPR143 ENST00000432757.1 2881 1455689 1475224 + seg_25 1464650 1468000 IL3RA OA1 = GPR143 ENST00000381229.4 2882 1734057 1761920 + seg_27 1733950 1735600 ASMT OA1 = GPR143 ENST00000381233.3 2883 1734068 1761974 + seg_27 1733950 1735600 ASMT OA1 = GPR143 ENST00000381241.3 2884 1733894 1761974 + seg_27 1733950 1735600 ASMT OA1 = GPR143 ENST00000381229.4 2885 1734057 1761920 + seg_28 1747250 1749200 ASMT OA1 = GPR143 ENST00000381233.3 2886 1734068 1761974 + seg_28 1747250 1749200 ASMT OA1 = GPR143 ENST00000381241.3 2887 1733894 1761974 + seg_28 1747250 1749200 ASMT OA1 = GPR143 ENST00000509780.1 2888 1746639 1755356 + seg_28 1747250 1749200 ASMT OA1 = GPR143 ENST00000430536.2 2889 2255872 2419001 − seg_29 2368950 2371350 DHRSX OA1 = GPR143 ENST00000441131.2 2890 2184895 2420846 − seg_29 2368950 2371350 DHRSX OA1 = GPR143 ENST00000334651.5 2891 2137557 2419019 − seg_29 2368950 2371350 DHRSX OA1 = GPR143 ENST00000444280.1 2892 2184811 2418691 − seg_29 2368950 2371350 DHRSX OA1 = GPR143 ENST00000478825.1 2893 2209543 2418630 − seg_29 2368950 2371350 DHRSX OA1 = GPR143 ENST00000412516.2 2894 2161103 2419014 − seg_29 2368950 2371350 DHRSX OA1 = GPR143 ENST00000430536.2 2895 2255872 2419001 − seg_30 2374650 2376750 DHRSX OA1 = GPR143 ENST00000441131.2 2896 2184895 2420846 − seg_30 2374650 2376750 DHRSX OA1 = GPR143 ENST00000334651.5 2897 2137557 2419019 − seg_30 2374650 2376750 DHRSX OA1 = GPR143 ENST00000444280.1 2898 2184811 2418691 − seg_30 2374650 2376750 DHRSX OA1 = GPR143 ENST00000478825.1 2899 2209543 2418630 − seg_30 2374650 2376750 DHRSX OA1 = GPR143 ENST00000412516.2 2900 2161103 2419014 − seg_30 2374650 2376750 DHRSX OA1 = GPR143 ENST00000430536.2 2901 2255872 2419001 − seg_31 2381200 2383650 ZBED1 OA1 = GPR143 ENST00000441131.2 2902 2184895 2420846 − seg_31 2381200 2383650 ZBED1 OA1 = GPR143 ENST00000334651.5 2903 2137557 2419019 − seg_31 2381200 2383650 ZBED1 OA1 = GPR143 ENST00000444280.1 2904 2184811 2418691 − seg_31 2381200 2383650 ZBED1 OA1 = GPR143 ENST00000478825.1 2905 2209543 2418630 − seg_31 2381200 2383650 ZBED1 OA1 = GPR143 ENST00000412516.2 2906 2161103 2419014 − seg_31 2381200 2383650 ZBED1 OA1 = GPR143 ENST00000430536.2 2907 2255872 2419001 − seg_32 2391700 2394350 ZBED1 OA1 = GPR143 ENST00000441131.2 2908 2184895 2420846 − seg_32 2391700 2394350 ZBED1 OA1 = GPR143 ENST00000334651.5 2909 2137557 2419019 − seg_32 2391700 2394350 ZBED1 OA1 = GPR143 ENST00000444280.1 2910 2184811 2418691 − seg_32 2391700 2394350 ZBED1 OA1 = GPR143 ENST00000478825.1 2911 2209543 2418630 − seg_32 2391700 2394350 ZBED1 OA1 = GPR143 ENST00000412516.2 2912 2161103 2419014 − seg_32 2391700 2394350 ZBED1 OA1 = GPR143 ENST00000426774.1 2913 2670093 2734539 + seg_38 2669000 2672950 XG OA1 = GPR143 ENST00000533923.2 2914 2670231 2732581 + seg_38 2669000 2672950 XG OA1 = GPR143 ENST00000381174.5 2915 2670091 2733968 + seg_38 2669000 2672950 XG OA1 = GPR143 ENST00000503018.1 2916 2670337 2693037 + seg_38 2669000 2672950 XG OA1 = GPR143 ENST00000419513.2 2917 2670093 2732589 + seg_38 2669000 2672950 XG OA1 = GPR143 ENST00000509484.2 2918 2670186 2729477 + seg_38 2669000 2672950 XG OA1 = GPR143 ENST00000426774.1 2919 2670093 2734539 + seg_39 2681550 2683000 XG OA1 = GPR143 ENST00000533923.2 2920 2670231 2732581 + seg_39 2681550 2683000 XG OA1 = GPR143 ENST00000381174.5 2921 2670091 2733968 + seg_39 2681550 2683000 XG OA1 = GPR143 ENST00000503018.1 2922 2670337 2693037 + seg_39 2681550 2683000 XG OA1 = GPR143 ENST00000419513.2 2923 2670093 2732589 + seg_39 2681550 2683000 XG OA1 = GPR143 ENST00000509484.2 2924 2670186 2729477 + seg_39 2681550 2683000 XG OA1 = GPR143 ENST00000426774.1 2925 2670093 2734539 + seg_40 2684450 2685950 XG OA1 = GPR143 ENST00000533923.2 2926 2670231 2732581 + seg_40 2684450 2685950 XG OA1 = GPR143 ENST00000381174.5 2927 2670091 2733968 + seg_40 2684450 2685950 XG OA1 = GPR143 ENST00000503018.1 2928 2670337 2693037 + seg_40 2684450 2685950 XG OA1 = GPR143 ENST00000419513.2 2929 2670093 2732589 + seg_40 2684450 2685950 XG OA1 = GPR143 ENST00000509484.2 2930 2670186 2729477 + seg_40 2684450 2685950 XG OA1 = GPR143 ENST00000426774.1 2931 2670093 2734539 + seg_41 2699450 2703000 XG OA1 = GPR143 ENST00000533923.2 2932 2670231 2732581 + seg_41 2699450 2703000 XG OA1 = GPR143 ENST00000381174.5 2933 2670091 2733968 + seg_41 2699450 2703000 XG OA1 = GPR143 ENST00000419513.2 2934 2670093 2732589 + seg_41 2699450 2703000 XG OA1 = GPR143 ENST00000509484.2 2935 2670186 2729477 + seg_41 2699450 2703000 XG OA1 = GPR143 ENST00000381134.3 2936 2852857 2882311 − seg_42 2854000 2856700 ARSD OA1 = GPR143 ENST00000545496.1 2937 2852852 2882325 − seg_42 2854000 2856700 ARSD OA1 = GPR143 ENST00000540563.1 2938 2852699 2886286 − seg_42 2854000 2856700 ARSD OA1 = GPR143 ENST00000438544.1 2939 2867664 2882305 − seg_43 2873200 2874800 ARSE OA1 = GPR143 ENST00000381134.3 2940 2852857 2882311 − seg_43 2873200 2874800 ARSE OA1 = GPR143 ENST00000545496.1 2941 2852852 2882325 − seg_43 2873200 2874800 ARSE OA1 = GPR143 ENST00000540563.1 2942 2852699 2886286 − seg_43 2873200 2874800 ARSE OA1 = GPR143 ENST00000496095.1 2943 2876452 2882305 − seg_44 2876400 2879500 ARSE OA1 = GPR143 ENST00000438544.1 2944 2867664 2882305 − seg_44 2876400 2879500 ARSE OA1 = GPR143 ENST00000381134.3 2945 2852857 2882311 − seg_44 2876400 2879500 ARSE OA1 = GPR143 ENST00000545496.1 2946 2852852 2882325 − seg_44 2876400 2879500 ARSE OA1 = GPR143 ENST00000540563.1 2947 2852699 2886286 − seg_44 2876400 2879500 ARSE OA1 = GPR143 ENST00000381130.2 2948 2924654 2951612 + seg_46 2936900 2938400 ARSH OA1 = GPR143 ENST00000432442.1 2949 9217960 9243246 + seg_56 9229800 9231600 FAM9B OA1 = GPR143 ENST00000432442.1 2950 9217960 9243246 + seg_57 9241950 9244700 FAM9B OA1 = GPR143 ENST00000416620.1 2951 9370791 9382606 + seg_62 9371100 9382750 TBL1X OA1 = GPR143 ENST00000441088.1 2952 9431360 9622328 + seg_63 9483500 9485000 TBL1X OA1 = GPR143 ENST00000217964.7 2953 9433048 9687778 + seg_63 9483500 9485000 TBL1X OA1 = GPR143 ENST00000380961.1 2954 9431369 9686902 + seg_63 9483500 9485000 TBL1X OA1 = GPR143 ENST00000407597.2 2955 9431335 9687780 + seg_63 9483500 9485000 TBL1X OA1 = GPR143 ENST00000424279.1 2956 9431335 9687780 + seg_63 9483500 9485000 TBL1X OA1 = GPR143 ENST00000415293.1 2957 9431371 9656077 + seg_63 9483500 9485000 TBL1X OA1 = GPR143 ENST00000536365.1 2958 9431352 9684302 + seg_63 9483500 9485000 TBL1X OA1 = GPR143 ENST00000422314.1 2959 9433334 9652158 + seg_63 9483500 9485000 TBL1X OA1 = GPR143 ENST00000380913.3 2960 9754496 9917483 + seg_64 9793150 9794450 SHROOM2 OA1 = GPR143 ENST00000380913.3 2961 9754496 9917483 + seg_65 9806050 9807500 SHROOM2 OA1 = GPR143 ENST00000380913.3 2962 9754496 9917483 + seg_66 9814250 9818150 SHROOM2 OA1 = GPR143 ENST00000380913.3 2963 9754496 9917483 + seg_67 9823350 9824550 SHROOM2 OA1 = GPR143 ENST00000493668.1 2964 9866185 9905186 + seg_68 9863450 9867000 SHROOM2 OA1 = GPR143 ENST00000380913.3 2965 9754496 9917483 + seg_68 9863450 9867000 SHROOM2 OA1 = GPR143 ENST00000493668.1 2966 9866185 9905186 + seg_69 9880300 9881950 SHROOM2 OA1 = GPR143 ENST00000418909.2 2967 9880412 9916398 + seg_69 9880300 9881950 SHROOM2 OA1 = GPR143 ENST00000540923.1 2968 9880723 9917476 + seg_69 9880300 9881950 SHROOM2 OA1 = GPR143 ENST00000452575.1 2969 9880723 9914748 + seg_69 9880300 9881950 SHROOM2 OA1 = GPR143 ENST00000380913.3 2970 9754496 9917483 + seg_69 9880300 9881950 SHROOM2 OA1 = GPR143 ENST00000493668.1 2971 9866185 9905186 + seg_70 9883800 9885000 SHROOM2 OA1 = GPR143 ENST00000418909.2 2972 9880412 9916398 + seg_70 9883800 9885000 SHROOM2 OA1 = GPR143 ENST00000540923.1 2973 9880723 9917476 + seg_70 9883800 9885000 SHROOM2 OA1 = GPR143 ENST00000452575.1 2974 9880723 9914748 + seg_70 9883800 9885000 SHROOM2 OA1 = GPR143 ENST00000380913.3 2975 9754496 9917483 + seg_70 9883800 9885000 SHROOM2 OA1 = GPR143 ENST00000418909.2 2976 9880412 9916398 + seg_71 9913900 9916050 SHROOM2 OA1 = GPR143 ENST00000540923.1 2977 9880723 9917476 + seg_71 9913900 9916050 SHROOM2 OA1 = GPR143 ENST00000452575.1 2978 9880723 9914748 + seg_71 9913900 9916050 SHROOM2 OA1 = GPR143 ENST00000380913.3 2979 9754496 9917483 + seg_71 9913900 9916050 SHROOM2 OA1 = GPR143 ENST00000543293.1 2980 10031499 10086141 + seg_73 10048550 10049650 WWC3 OA1 = GPR143 ENST00000398613.4 2981 10035291 10109658 + seg_73 10048550 10049650 WWC3 OA1 = GPR143 ENST00000380861.4 2982 9983602 10112518 + seg_73 10048550 10049650 WWC3 OA1 = GPR143 ENST00000454666.1 2983 10031499 10109658 + seg_73 10048550 10049650 WWC3 OA1 = GPR143 ENST00000421085.2 2984 10126540 10201760 + seg_74 10180950 10182200 CLCN4 OA1 = GPR143 ENST00000380829.1 2985 10126488 10201737 + seg_74 10180950 10182200 CLCN4 OA1 = GPR143 ENST00000380833.4 2986 10125024 10205700 + seg_74 10180950 10182200 CLCN4 OA1 = GPR143 ENST00000421085.2 2987 10126540 10201760 + seg_75 10189550 10190550 CLCN4 OA1 = GPR143 ENST00000380829.1 2988 10126488 10201737 + seg_75 10189550 10190550 CLCN4 OA1 = GPR143 ENST00000380833.4 2989 10125024 10205700 + seg_75 10189550 10190550 CLCN4 OA1 = GPR143 ENST00000384473.1 2990 10550857 10550959 + seg_77 10549850 10550950 MID1 OA1 = GPR143 ENST00000423614.1 2991 10534995 10588625 − seg_77 10549850 10550950 MID1 OA1 = GPR143 ENST00000453318.2 2992 10413350 10645779 − seg_77 10549850 10550950 MID1 OA1 = GPR143 ENST00000380782.1 2993 10413596 10588459 − seg_77 10549850 10550950 MID1 OA1 = GPR143 ENST00000380787.1 2994 10413596 10851773 − seg_77 10549850 10550950 MID1 OA1 = GPR143 ENST00000380785.1 2995 10413596 10851762 − seg_77 10549850 10550950 MID1 OA1 = GPR143 ENST00000317552.4 2996 10413350 10588674 − seg_77 10549850 10550950 MID1 OA1 = GPR143 ENST00000413894.1 2997 10423115 10645727 − seg_77 10549850 10550950 MID1 OA1 = GPR143 ENST00000380780.1 2998 10413596 10557949 − seg_77 10549850 10550950 MID1 OA1 = GPR143 ENST00000423614.1 2999 10534995 10588625 − seg_78 10575350 10576400 MID1 OA1 = GPR143 ENST00000453318.2 3000 10413350 10645779 − seg_78 10575350 10576400 MID1 OA1 = GPR143 ENST00000380782.1 3001 10413596 10588459 − seg_78 10575350 10576400 MID1 OA1 = GPR143 ENST00000380787.1 3002 10413596 10851773 − seg_78 10575350 10576400 MID1 OA1 = GPR143 ENST00000380785.1 3003 10413596 10851762 − seg_78 10575350 10576400 MID1 OA1 = GPR143 ENST00000317552.4 3004 10413350 10588674 − seg_78 10575350 10576400 MID1 OA1 = GPR143 ENST00000413894.1 3005 10423115 10645727 − seg_78 10575350 10576400 MID1 OA1 = GPR143 ENST00000423614.1 3006 10534995 10588625 − seg_79 10577550 10579300 MID1 OA1 = GPR143 ENST00000453318.2 3007 10413350 10645779 − seg_79 10577550 10579300 MID1 OA1 = GPR143 ENST00000380782.1 3008 10413596 10588459 − seg_79 10577550 10579300 MID1 OA1 = GPR143 ENST00000380787.1 3009 10413596 10851773 − seg_79 10577550 10579300 MID1 OA1 = GPR143 ENST00000380785.1 3010 10413596 10851762 − seg_79 10577550 10579300 MID1 OA1 = GPR143 ENST00000317552.4 3011 10413350 10588674 − seg_79 10577550 10579300 MID1 OA1 = GPR143 ENST00000413894.1 3012 10423115 10645727 − seg_79 10577550 10579300 MID1 OA1 = GPR143 ENST00000423614.1 3013 10534995 10588625 − seg_80 10587800 10589900 MID1 OA1 = GPR143 ENST00000453318.2 3014 10413350 10645779 − seg_80 10587800 10589900 MID1 OA1 = GPR143 ENST00000380782.1 3015 10413596 10588459 − seg_80 10587800 10589900 MID1 OA1 = GPR143 ENST00000380787.1 3016 10413596 10851773 − seg_80 10587800 10589900 MID1 OA1 = GPR143 ENST00000380785.1 3017 10413596 10851762 − seg_80 10587800 10589900 MID1 OA1 = GPR143 ENST00000317552.4 3018 10413350 10588674 − seg_80 10587800 10589900 MID1 OA1 = GPR143 ENST00000413894.1 3019 10423115 10645727 − seg_80 10587800 10589900 MID1 OA1 = GPR143 ENST00000380787.1 3020 10413596 10851773 − seg_81 10837250 10839150 HCCS OA1 = GPR143 ENST00000380785.1 3021 10413596 10851762 − seg_81 10837250 10839150 HCCS OA1 = GPR143 ENST00000380736.1 3022 11155663 11445893 − seg_82 11358850 11360300 ARHGAP6 OA1 = GPR143 ENST00000413512.3 3023 11162134 11369656 − seg_82 11358850 11360300 ARHGAP6 OA1 = GPR143 ENST00000380732.3 3024 11166770 11682948 − seg_82 11358850 11360300 ARHGAP6 OA1 = GPR143 ENST00000489330.1 3025 11155667 11683203 − seg_82 11358850 11360300 ARHGAP6 OA1 = GPR143 ENST00000337414.4 3026 11155664 11683821 − seg_82 11358850 11360300 ARHGAP6 OA1 = GPR143 ENST00000495242.1 3027 11155664 11683821 − seg_82 11358850 11360300 ARHGAP6 OA1 = GPR143 ENST00000380718.1 3028 11161517 11683821 − seg_82 11358850 11360300 ARHGAP6 OA1 = GPR143 ENST00000380736.1 3029 11155663 11445893 − seg_83 11385800 11386800 ARHGAP6 OA1 = GPR143 ENST00000380732.3 3030 11166770 11682948 − seg_83 11385800 11386800 ARHGAP6 OA1 = GPR143 ENST00000489330.1 3031 11155667 11683203 − seg_83 11385800 11386800 ARHGAP6 OA1 = GPR143 ENST00000337414.4 3032 11155664 11683821 − seg_83 11385800 11386800 ARHGAP6 OA1 = GPR143 ENST00000495242.1 3033 11155664 11683821 − seg_83 11385800 11386800 ARHGAP6 OA1 = GPR143 ENST00000380718.1 3034 11161517 11683821 − seg_83 11385800 11386800 ARHGAP6 OA1 = GPR143 ENST00000380732.3 3035 11166770 11682948 − seg_84 11478950 11480450 ARHGAP6 OA1 = GPR143 ENST00000489330.1 3036 11155667 11683203 − seg_84 11478950 11480450 ARHGAP6 OA1 = GPR143 ENST00000337414.4 3037 11155664 11683821 − seg_84 11478950 11480450 ARHGAP6 OA1 = GPR143 ENST00000495242.1 3038 11155664 11683821 − seg_84 11478950 11480450 ARHGAP6 OA1 = GPR143 ENST00000380718.1 3039 11161517 11683821 − seg_84 11478950 11480450 ARHGAP6 OA1 = GPR143 ENST00000380732.3 3040 11166770 11682948 − seg_85 11482700 11483900 ARHGAP6 OA1 = GPR143 ENST00000489330.1 3041 11155667 11683203 − seg_85 11482700 11483900 ARHGAP6 OA1 = GPR143 ENST00000337414.4 3042 11155664 11683821 − seg_85 11482700 11483900 ARHGAP6 OA1 = GPR143 ENST00000495242.1 3043 11155664 11683821 − seg_85 11482700 11483900 ARHGAP6 OA1 = GPR143 ENST00000380718.1 3044 11161517 11683821 − seg_85 11482700 11483900 ARHGAP6 OA1 = GPR143 ENST00000304087.6 3045 12516791 12742633 + seg_87 12726850 12727900 PRPS2 SEDL = TRAPPC2 ENST00000380682.1 3046 12156585 12742642 + seg_87 12726850 12727900 PRPS2 SEDL = TRAPPC2 ENST00000429478.2 3047 12516714 12736911 + seg_87 12726850 12727900 PRPS2 SEDL = TRAPPC2 ENST00000451311.2 3048 12993227 12995346 + seg_92 12995250 12996450 TMSB4X SEDL = TRAPPC2 ENST00000380635.1 3049 12993363 12995346 + seg_92 12995250 12996450 TMSB4X SEDL = TRAPPC2 ENST00000380636.1 3050 12993229 12995345 + seg_92 12995250 12996450 TMSB4X SEDL = TRAPPC2 ENST00000456091.1 3051 13354500 13391753 + seg_93 13374100 13375150 ATXN3L SEDL = TRAPPC2 ENST00000380602.3 3052 13587741 13651694 + seg_98 13587150 13589150 EGFL6 SEDL = TRAPPC2 ENST00000361306.1 3053 13587724 13651693 + seg_98 13587150 13589150 EGFL6 SEDL = TRAPPC2 ENST00000380602.3 3054 13587741 13651694 + seg_99 13634850 13636950 TCEANC SEDL = TRAPPC2 ENST00000361306.1 3055 13587724 13651693 + seg_99 13634850 13636950 TCEANC SEDL = TRAPPC2 ENST00000493677.1 3056 13790818 13835188 − seg_100 13800750 13802000 GPM6B OFD1 ENST00000355135.2 3057 13792073 13835188 − seg_100 13800750 13802000 GPM6B OFD1 ENST00000316715.4 3058 13789150 13835461 − seg_100 13800750 13802000 GPM6B OFD1 ENST00000495211.1 3059 13794286 13802040 − seg_100 13800750 13802000 GPM6B OFD1 ENST00000356942.5 3060 13792073 13835465 − seg_100 13800750 13802000 GPM6B OFD1 ENST00000475307.1 3061 13801568 13835442 − seg_100 13800750 13802000 GPM6B OFD1 ENST00000493085.1 3062 13797972 13907176 − seg_100 13800750 13802000 GPM6B OFD1 ENST00000398361.3 3063 13792456 13956534 − seg_100 13800750 13802000 GPM6B OFD1 ENST00000468080.1 3064 13798027 13907731 − seg_100 13800750 13802000 GPM6B OFD1 ENST00000454189.2 3065 13789575 13956757 − seg_100 13800750 13802000 GPM6B OFD1 ENST00000493677.1 3066 13790818 13835188 − seg_101 13803050 13806050 GPM6B OFD1 ENST00000355135.2 3067 13792073 13835188 − seg_101 13803050 13806050 GPM6B OFD1 ENST00000316715.4 3068 13789150 13835461 − seg_101 13803050 13806050 GPM6B OFD1 ENST00000356942.5 3069 13792073 13835465 − seg_101 13803050 13806050 GPM6B OFD1 ENST00000475307.1 3070 13801568 13835442 − seg_101 13803050 13806050 GPM6B OFD1 ENST00000493085.1 3071 13797972 13907176 − seg_101 13803050 13806050 GPM6B OFD1 ENST00000398361.3 3072 13792456 13956534 − seg_101 13803050 13806050 GPM6B OFD1 ENST00000468080.1 3073 13798027 13907731 − seg_101 13803050 13806050 GPM6B OFD1 ENST00000454189.2 3074 13789575 13956757 − seg_101 13803050 13806050 GPM6B OFD1 ENST00000493677.1 3075 13790818 13835188 − seg_102 13820050 13821950 GPM6B OFD1 ENST00000355135.2 3076 13792073 13835188 − seg_102 13820050 13821950 GPM6B OFD1 ENST00000316715.4 3077 13789150 13835461 − seg_102 13820050 13821950 GPM6B OFD1 ENST00000356942.5 3078 13792073 13835465 − seg_102 13820050 13821950 GPM6B OFD1 ENST00000475307.1 3079 13801568 13835442 − seg_102 13820050 13821950 GPM6B OFD1 ENST00000493085.1 3080 13797972 13907176 − seg_102 13820050 13821950 GPM6B OFD1 ENST00000398361.3 3081 13792456 13956534 − seg_102 13820050 13821950 GPM6B OFD1 ENST00000468080.1 3082 13798027 13907731 − seg_102 13820050 13821950 GPM6B OFD1 ENST00000454189.2 3083 13789575 13956757 − seg_102 13820050 13821950 GPM6B OFD1 ENST00000493677.1 3084 13790818 13835188 − seg_103 13832300 13835750 GPM6B OFD1 ENST00000355135.2 3085 13792073 13835188 − seg_103 13832300 13835750 GPM6B OFD1 ENST00000316715.4 3086 13789150 13835461 − seg_103 13832300 13835750 GPM6B OFD1 ENST00000356942.5 3087 13792073 13835465 − seg_103 13832300 13835750 GPM6B OFD1 ENST00000475307.1 3088 13801568 13835442 − seg_103 13832300 13835750 GPM6B OFD1 ENST00000493085.1 3089 13797972 13907176 − seg_103 13832300 13835750 GPM6B OFD1 ENST00000398361.3 3090 13792456 13956534 − seg_103 13832300 13835750 GPM6B OFD1 ENST00000468080.1 3091 13798027 13907731 − seg_103 13832300 13835750 GPM6B OFD1 ENST00000454189.2 3092 13789575 13956757 − seg_103 13832300 13835750 GPM6B OFD1 ENST00000398361.3 3093 13792456 13956534 − seg_104 13917650 13919650 GPM6B OFD1 ENST00000454189.2 3094 13789575 13956757 − seg_104 13917650 13919650 GPM6B OFD1 ENST00000398361.3 3095 13792456 13956534 − seg_105 13941900 13943750 GPM6B OFD1 ENST00000454189.2 3096 13789575 13956757 − seg_105 13941900 13943750 GPM6B OFD1 ENST00000398361.3 3097 13792456 13956534 − seg_106 13954250 13956600 GPM6B OFD1 ENST00000454189.2 3098 13789575 13956757 − seg_106 13954250 13956600 GPM6B OFD1 ENST00000380488.4 3099 15262109 15288270 − seg_112 15286800 15288500 ASB9 PIGA ENST00000473862.1 3100 15262412 15288135 − seg_112 15286800 15288500 ASB9 PIGA ENST00000546332.1 3101 15262111 15288589 − seg_112 15286800 15288500 ASB9 PIGA ENST00000380483.3 3102 15262109 15288173 − seg_112 15286800 15288500 ASB9 PIGA ENST00000380485.3 3103 15262109 15288183 − seg_112 15286800 15288500 ASB9 PIGA ENST00000470015.1 3104 15268652 15288281 − seg_112 15286800 15288500 ASB9 PIGA ENST00000380470.3 3105 15299819 15333746 − seg_113 15301150 15302150 ASB9 PIGA ENST00000537676.1 3106 15298053 15332681 − seg_113 15301150 15302150 ASB9 PIGA ENST00000344384.4 3107 15300441 15332681 − seg_113 15301150 15302150 ASB9 PIGA ENST00000485437.1 3108 15301628 15333727 − seg_113 15301150 15302150 ASB9 PIGA ENST00000480796.1 3109 15301166 15333778 − seg_113 15301150 15302150 ASB9 PIGA ENST00000380470.3 3110 15299819 15333746 − seg_114 15321650 15322700 ASB11 PIGA ENST00000537676.1 3111 15298053 15332681 − seg_114 15321650 15322700 ASB11 PIGA ENST00000344384.4 3112 15300441 15332681 − seg_114 15321650 15322700 ASB11 PIGA ENST00000485437.1 3113 15301628 15333727 − seg_114 15321650 15322700 ASB11 PIGA ENST00000480796.1 3114 15301166 15333778 − seg_114 15321650 15322700 ASB11 PIGA ENST00000297904.3 3115 15363713 15402498 − seg_116 15382100 15387750 FIGF PIGA ENST00000297904.3 3116 15363713 15402498 − seg_117 15391300 15392750 FIGF PIGA ENST00000380342.3 3117 15645441 15683154 − seg_118 15661050 15663600 TMEM27 PIGA ENST00000380289.2 3118 16141679 16171144 + seg_119 16141650 16142650 GRPR PIGA ENST00000535371.1 3119 16142045 16170808 + seg_119 16141650 16142650 GRPR PIGA ENST00000357277.3 3120 16964814 17171395 + seg_123 16965250 16968400 REPS2 CC = NHS ENST00000380063.2 3121 16964814 17167136 + seg_123 16965250 16968400 REPS2 CC = NHS ENST00000481792.1 3122 16965193 17040494 + seg_123 16965250 16968400 REPS2 CC = NHS ENST00000303843.7 3123 16964985 17171395 + seg_123 16965250 16968400 REPS2 CC = NHS ENST00000357277.3 3124 16964814 17171395 + seg_124 17028550 17029750 REPS2 CC = NHS ENST00000380063.2 3125 16964814 17167136 + seg_124 17028550 17029750 REPS2 CC = NHS ENST00000380064.4 3126 16996667 17165745 + seg_124 17028550 17029750 REPS2 CC = NHS ENST00000481792.1 3127 16965193 17040494 + seg_124 17028550 17029750 REPS2 CC = NHS ENST00000303843.7 3128 16964985 17171395 + seg_124 17028550 17029750 REPS2 CC = NHS ENST00000469714.1 3129 17092636 17165752 + seg_125 17113350 17114550 REPS2 CC = NHS ENST00000357277.3 3130 16964814 17171395 + seg_125 17113350 17114550 REPS2 CC = NHS ENST00000380063.2 3131 16964814 17167136 + seg_125 17113350 17114550 REPS2 CC = NHS ENST00000380064.4 3132 16996667 17165745 + seg_125 17113350 17114550 REPS2 CC = NHS ENST00000303843.7 3133 16964985 17171395 + seg_125 17113350 17114550 REPS2 CC = NHS ENST00000380057.4 3134 17705832 17754111 + seg_126 17749950 17751500 SCML1 CC = NHS ENST00000398097.3 3135 17653413 17754098 + seg_126 17749950 17751500 SCML1 CC = NHS ENST00000380060.3 3136 17393543 17754114 + seg_126 17749950 17751500 SCML1 CC = NHS ENST00000360011.1 3137 17818171 17878827 − seg_127 17876650 17878250 RAI2 CC = NHS ENST00000331511.1 3138 17818171 17879356 − seg_127 17876650 17878250 RAI2 CC = NHS ENST00000545871.1 3139 17818171 17879457 − seg_127 17876650 17878250 RAI2 CC = NHS ENST00000451717.1 3140 17818171 17879457 − seg_127 17876650 17878250 RAI2 CC = NHS ENST00000415486.2 3141 17818171 17879457 − seg_127 17876650 17878250 RAI2 CC = NHS ENST00000380033.4 3142 18181051 18239003 − seg_128 18211700 18212750 BEND2 CDKL5 ENST00000380030.3 3143 18189095 18239024 − seg_128 18211700 18212750 BEND2 CDKL5 ENST00000380033.4 3144 18181051 18239003 − seg_129 18234150 18238350 BEND2 CDKL5 ENST00000380030.3 3145 18189095 18239024 − seg_129 18234150 18238350 BEND2 CDKL5 ENST00000379996.3 3146 18443703 18671749 + seg_135 18443550 18447600 CDKL5 CDKL5 ENST00000379996.3 3147 18443703 18671749 + seg_136 18451450 18452650 CDKL5 CDKL5 ENST00000463994.1 3148 18622067 18638077 + seg_137 18624850 18626400 RS1 RS1 ENST00000379996.3 3149 18443703 18671749 + seg_137 18624850 18626400 RS1 RS1 ENST00000379989.3 3150 18460308 18671745 + seg_137 18624850 18626400 RS1 RS1 ENST00000379996.3 3151 18443703 18671749 + seg_138 18651650 18653200 RS1 RS1 ENST00000379989.3 3152 18460308 18671745 + seg_138 18651650 18653200 RS1 RS1 ENST00000476595.1 3153 18660044 18668657 − seg_139 18659400 18661000 RS1 RS1 ENST00000379984.3 3154 18658030 18690229 − seg_139 18659400 18661000 RS1 RS1 ENST00000379996.3 3155 18443703 18671749 + seg_139 18659400 18661000 RS1 RS1 ENST00000379989.3 3156 18460308 18671745 + seg_139 18659400 18661000 RS1 RS1 ENST00000476595.1 3157 18660044 18668657 − seg_140 18663000 18664250 RS1 RS1 ENST00000379984.3 3158 18658030 18690229 − seg_140 18663000 18664250 RS1 RS1 ENST00000379996.3 3159 18443703 18671749 + seg_140 18663000 18664250 RS1 RS1 ENST00000379989.3 3160 18460308 18671745 + seg_140 18663000 18664250 RS1 RS1 ENST00000379984.3 3161 18658030 18690229 − seg_141 18689000 18690200 RS1 RS1 ENST00000486029.1 3162 18694029 18716028 + seg_142 18694650 18696250 RS1 RS1 ENST00000486029.1 3163 18694029 18716028 + seg_143 18704800 18705850 RS1 RS1 ENST00000379962.2 3164 18748282 18845778 + seg_144 18814500 18815800 PPEF1 RS1 ENST00000359763.6 3165 18709046 18846039 + seg_144 18814500 18815800 PPEF1 RS1 ENST00000349874.5 3166 18709046 18846039 + seg_144 18814500 18815800 PPEF1 RS1 ENST00000543630.1 3167 18709046 18846039 + seg_144 18814500 18815800 PPEF1 RS1 ENST00000544635.1 3168 18725773 18845806 + seg_144 18814500 18815800 PPEF1 RS1 ENST00000361511.3 3169 18709032 18846035 + seg_144 18814500 18815800 PPEF1 RS1 ENST00000340581.3 3170 19008128 19100861 − seg_149 19012650 19013750 PHKA2 PHKA2 ENST00000397917.4 3171 19008829 19049228 − seg_149 19012650 19013750 PHKA2 PHKA2 ENST00000357991.3 3172 19007432 19140579 − seg_149 19012650 19013750 PHKA2 PHKA2 ENST00000379869.3 3173 19007432 19140677 − seg_149 19012650 19013750 PHKA2 PHKA2 ENST00000379876.1 3174 19007427 19140755 − seg_149 19012650 19013750 PHKA2 PHKA2 ENST00000354791.3 3175 19007427 19140755 − seg_149 19012650 19013750 PHKA2 PHKA2 ENST00000356606.4 3176 19007433 19140582 − seg_149 19012650 19013750 PHKA2 PHKA2 ENST00000379873.2 3177 19007427 19140755 − seg_149 19012650 19013750 PHKA2 PHKA2 ENST00000360279.4 3178 19007432 19140677 − seg_149 19012650 19013750 PHKA2 PHKA2 ENST00000357544.3 3179 19007432 19140677 − seg_149 19012650 19013750 PHKA2 PHKA2 ENST00000379878.3 3180 19007427 19140755 − seg_149 19012650 19013750 PHKA2 PHKA2 ENST00000340581.3 3181 19008128 19100861 − seg_150 19038700 19039900 PHKA2 PHKA2 ENST00000397917.4 3182 19008829 19049228 − seg_150 19038700 19039900 PHKA2 PHKA2 ENST00000479496.1 3183 19037686 19054506 − seg_150 19038700 19039900 PHKA2 PHKA2 ENST00000357991.3 3184 19007432 19140579 − seg_150 19038700 19039900 PHKA2 PHKA2 ENST00000379869.3 3185 19007432 19140677 − seg_150 19038700 19039900 PHKA2 PHKA2 ENST00000379876.1 3186 19007427 19140755 − seg_150 19038700 19039900 PHKA2 PHKA2 ENST00000354791.3 3187 19007427 19140755 − seg_150 19038700 19039900 PHKA2 PHKA2 ENST00000356606.4 3188 19007433 19140582 − seg_150 19038700 19039900 PHKA2 PHKA2 ENST00000379873.2 3189 19007427 19140755 − seg_150 19038700 19039900 PHKA2 PHKA2 ENST00000360279.4 3190 19007432 19140677 − seg_150 19038700 19039900 PHKA2 PHKA2 ENST00000357544.3 3191 19007432 19140677 − seg_150 19038700 19039900 PHKA2 PHKA2 ENST00000379878.3 3192 19007427 19140755 − seg_150 19038700 19039900 PHKA2 PHKA2 ENST00000340581.3 3193 19008128 19100861 − seg_151 19065750 19066850 GPR64 PHKA2 ENST00000357991.3 3194 19007432 19140579 − seg_151 19065750 19066850 GPR64 PHKA2 ENST00000379869.3 3195 19007432 19140677 − seg_151 19065750 19066850 GPR64 PHKA2 ENST00000379876.1 3196 19007427 19140755 − seg_151 19065750 19066850 GPR64 PHKA2 ENST00000354791.3 3197 19007427 19140755 − seg_151 19065750 19066850 GPR64 PHKA2 ENST00000356606.4 3198 19007433 19140582 − seg_151 19065750 19066850 GPR64 PHKA2 ENST00000379873.2 3199 19007427 19140755 − seg_151 19065750 19066850 GPR64 PHKA2 ENST00000360279.4 3200 19007432 19140677 − seg_151 19065750 19066850 GPR64 PHKA2 ENST00000357544.3 3201 19007432 19140677 − seg_151 19065750 19066850 GPR64 PHKA2 ENST00000379878.3 3202 19007427 19140755 − seg_151 19065750 19066850 GPR64 PHKA2 ENST00000365274.1 3203 19394892 19394993 + seg_155 19393250 19401800 PDHA1 PHKA2 ENST00000338883.4 3204 19378174 19533379 − seg_155 19393250 19401800 PDHA1 PHKA2 ENST00000359173.3 3205 19378176 19478245 − seg_155 19393250 19401800 PDHA1 PHKA2 ENST00000469203.2 3206 19378797 19504642 − seg_155 19393250 19401800 PDHA1 PHKA2 ENST00000518578.1 3207 19378174 19500394 − seg_155 19393250 19401800 PDHA1 PHKA2 ENST00000338883.4 3208 19378174 19533379 − seg_156 19415800 19417450 MAP3K15 PHKA2 ENST00000359173.3 3209 19378176 19478245 − seg_156 19415800 19417450 MAP3K15 PHKA2 ENST00000469203.2 3210 19378797 19504642 − seg_156 19415800 19417450 MAP3K15 PHKA2 ENST00000518578.1 3211 19378174 19500394 − seg_156 19415800 19417450 MAP3K15 PHKA2 ENST00000338883.4 3212 19378174 19533379 − seg_157 19474150 19475400 MAP3K15 PHKA2 ENST00000359173.3 3213 19378176 19478245 − seg_157 19474150 19475400 MAP3K15 PHKA2 ENST00000469203.2 3214 19378797 19504642 − seg_157 19474150 19475400 MAP3K15 PHKA2 ENST00000518578.1 3215 19378174 19500394 − seg_157 19474150 19475400 MAP3K15 PHKA2 ENST00000397804.1 3216 19553520 19725207 − seg_158 19554750 19556200 MAP3K15 PHKA2 ENST00000379698.4 3217 19553811 19817869 − seg_158 19554750 19556200 MAP3K15 PHKA2 ENST00000397821.3 3218 19552093 19905719 − seg_158 19554750 19556200 MAP3K15 PHKA2 ENST00000379702.2 3219 19552083 19905719 − seg_158 19554750 19556200 MAP3K15 PHKA2 ENST00000379726.3 3220 19554532 19764529 − seg_158 19554750 19556200 MAP3K15 PHKA2 ENST00000541422.1 3221 19554308 19688480 − seg_158 19554750 19556200 MAP3K15 PHKA2 ENST00000379716.1 3222 19552125 19689116 − seg_158 19554750 19556200 MAP3K15 PHKA2 ENST00000397804.1 3223 19553520 19725207 − seg_159 19560350 19561400 MAP3K15 PHKA2 ENST00000379698.4 3224 19553811 19817869 − seg_159 19560350 19561400 MAP3K15 PHKA2 ENST00000397821.3 3225 19552093 19905719 − seg_159 19560350 19561400 MAP3K15 PHKA2 ENST00000379702.2 3226 19552083 19905719 − seg_159 19560350 19561400 MAP3K15 PHKA2 ENST00000379726.3 3227 19554532 19765429 − seg_159 19560350 19561400 MAP3K15 PHKA2 ENST00000541422.1 3228 19554308 19688480 − seg_159 19560350 19561400 MAP3K15 PHKA2 ENST00000379716.1 3229 19552125 19689116 − seg_159 19560350 19561400 MAP3K15 PHKA2 ENST00000397804.1 3230 19553520 19725207 − seg_160 19570450 19571550 MAP3K15 PHKA2 ENST00000379698.4 3231 19553811 19817869 − seg_160 19570450 19571550 MAP3K15 PHKA2 ENST00000397821.3 3232 19552093 19905719 − seg_160 19570450 19571550 MAP3K15 PHKA2 ENST00000379702.2 3233 19552083 19905719 − seg_160 19570450 19571550 MAP3K15 PHKA2 ENST00000379726.3 3234 19554532 19764529 − seg_160 19570450 19571550 MAP3K15 PHKA2 ENST00000541422.1 3235 19554308 19688480 − seg_160 19570450 19571550 MAP3K15 PHKA2 ENST00000379716.1 3236 19552125 19689116 − seg_160 19570450 19571550 MAP3K15 PHKA2 ENST00000397804.1 3237 19553520 19725207 − seg_161 19620350 19621400 SH3KBP1 PHKA2 ENST00000379698.4 3238 19553811 19817869 − seg_161 19620350 19621400 SH3KBP1 PHKA2 ENST00000397821.3 3239 19552093 19905719 − seg_161 19620350 19621400 SH3KBP1 PHKA2 ENST00000477102.1 3240 19610186 19682833 − seg_161 19620350 19621400 SH3KBP1 PHKA2 ENST00000379697.3 3241 19606396 19905577 − seg_161 19620350 19621400 SH3KBP1 PHKA2 ENST00000494961.1 3242 19606802 19713819 − seg_161 19620350 19621400 SH3KBP1 PHKA2 ENST00000379702.2 3243 19552083 19905719 − seg_161 19620350 19621400 SH3KBP1 PHKA2 ENST00000379726.3 3244 19554532 19764529 − seg_161 19620350 19621400 SH3KBP1 PHKA2 ENST00000541422.1 3245 19554308 19688480 − seg_161 19620350 19621400 SH3KBP1 PHKA2 ENST00000379716.1 3246 19552125 19689116 − seg_161 19620350 19621400 SH3KBP1 PHKA2 ENST00000397804.1 3247 19553520 19725207 − seg_162 19638050 19639150 SH3KBP1 PHKA2 ENST00000379698.4 3248 19553811 19817869 − seg_162 19638050 19639150 SH3KBP1 PHKA2 ENST00000397821.3 3249 19552093 19905719 − seg_162 19638050 19639150 SH3KBP1 PHKA2 ENST00000477102.1 3250 19610186 19682833 − seg_162 19638050 19639150 SH3KBP1 PHKA2 ENST00000379697.3 3251 19606396 19905577 − seg_162 19638050 19639150 SH3KBP1 PHKA2 ENST00000494961.1 3252 19606802 19713819 − seg_162 19638050 19639150 SH3KBP1 PHKA2 ENST00000379702.2 3253 19552083 19905719 − seg_162 19638050 19639150 SH3KBP1 PHKA2 ENST00000379726.3 3254 19554532 19764529 − seg_162 19638050 19639150 SH3KBP1 PHKA2 ENST00000541422.1 3255 19554308 19688480 − seg_162 19638050 19639150 SH3KBP1 PHKA2 ENST00000379716.1 3256 19552125 19689116 − seg_162 19638050 19639150 SH3KBP1 PHKA2 ENST00000379698.4 3257 19553811 19817869 − seg_163 19813200 19814750 SH3KBP1 PHKA2 ENST00000397821.3 3258 19552093 19905719 − seg_163 19813200 19814750 SH3KBP1 PHKA2 ENST00000379697.3 3259 19606396 19905577 − seg_163 19813200 19814750 SH3KBP1 PHKA2 ENST00000379702.2 3260 19552083 19905719 − seg_163 19813200 19814750 SH3KBP1 PHKA2 ENST00000379698.4 3261 19553811 19817869 − seg_164 19817600 19819100 SH3KBP1 PHKA2 ENST00000397821.3 3262 19552093 19905719 − seg_164 19817600 19819100 SH3KBP1 PHKA2 ENST00000379697.3 3263 19606396 19905577 − seg_164 19817600 19819100 SH3KBP1 PHKA2 ENST00000379702.2 3264 19552083 19905719 − seg_164 19817600 19819100 SH3KBP1 PHKA2 ENST00000397821.3 3265 19552093 19905719 − seg_165 19879900 19881050 SH3KBP1 PHKA2 ENST00000379697.3 3266 19606396 19905577 − seg_165 19879900 19881050 SH3KBP1 PHKA2 ENST00000379702.2 3267 19552083 19905719 − seg_165 19879900 19881050 SH3KBP1 PHKA2 ENST00000397821.3 3268 19552093 19905719 − seg_166 19883900 19887350 SH3KBP1 PHKA2 ENST00000379697.3 3269 19606396 19905577 − seg_166 19883900 19887350 SH3KBP1 PHKA2 ENST00000379702.2 3270 19552083 19905719 − seg_166 19883900 19887350 SH3KBP1 PHKA2 ENST00000397821.3 3271 19552093 19905719 − seg_167 19890300 19891400 SH3KBP1 PHKA2 ENST00000379697.3 3272 19606396 19905577 − seg_167 19890300 19891400 SH3KBP1 PHKA2 ENST00000379702.2 3273 19552083 19905719 − seg_167 19890300 19891400 SH3KBP1 PHKA2 ENST00000397821.3 3274 19552093 19905719 − seg_168 19894150 19895700 SH3KBP1 PHKA2 ENST00000379697.3 3275 19606396 19905577 − seg_168 19894150 19895700 SH3KBP1 PHKA2 ENST00000379702.2 3276 19552083 19905719 − seg_168 19894150 19895700 SH3KBP1 PHKA2 ENST00000397821.3 3277 19552093 19905719 − seg_169 19902750 19905650 SH3KBP1 PHKA2 ENST00000379697.3 3278 19606396 19905577 − seg_169 19902750 19905650 SH3KBP1 PHKA2 ENST00000379702.2 3279 19552083 19905719 − seg_169 19902750 19905650 SH3KBP1 PHKA2 ENST00000466145.1 3280 20039466 20044061 − seg_172 20041050 20042600 MAP7D2 PHKA2 ENST00000379643.4 3281 20024833 20135114 − seg_172 20041050 20042600 MAP7D2 PHKA2 ENST00000544957.1 3282 20026440 20135022 − seg_172 20041050 20042600 MAP7D2 PHKA2 ENST00000543767.1 3283 20024989 20074895 − seg_172 20041050 20042600 MAP7D2 PHKA2 ENST00000443379.2 3284 20024833 20135114 − seg_172 20041050 20042600 MAP7D2 PHKA2 ENST00000379651.3 3285 20024831 20135016 − seg_172 20041050 20042600 MAP7D2 PHKA2 ENST00000452324.2 3286 20024833 20134756 − seg_172 20041050 20042600 MAP7D2 PHKA2 ENST00000485173.1 3287 20025227 20082856 − seg_172 20041050 20042600 MAP7D2 PHKA2 ENST00000330274.7 3288 20070519 20135114 − seg_173 20128750 20130450 MAP7D2 PHKA2 ENST00000379643.4 3289 20024833 20135114 − seg_173 20128750 20130450 MAP7D2 PHKA2 ENST00000544957.1 3290 20026440 20135022 − seg_173 20128750 20130450 MAP7D2 PHKA2 ENST00000443379.2 3291 20024833 20135114 − seg_173 20128750 20130450 MAP7D2 PHKA2 ENST00000379651.3 3292 20024831 20135016 − seg_173 20128750 20130450 MAP7D2 PHKA2 ENST00000452324.2 3293 20024833 20134756 − seg_173 20128750 20130450 MAP7D2 PHKA2 ENST00000379374.4 3294 22050559 22269427 + seg_183 22051000 22052100 PHEX PHEX ENST00000537599.1 3295 22051016 22266300 + seg_183 22051000 22052100 PHEX PHEX ENST00000379374.4 3296 22050559 22269427 + seg_184 22073800 22074800 PHEX PHEX ENST00000537599.1 3297 22051016 22266300 + seg_184 22073800 22074800 PHEX PHEX ENST00000535894.1 3298 22056171 22266413 + seg_184 22073800 22074800 PHEX PHEX ENST00000379295.1 3299 23721801 23784592 − seg_186 23774100 23775150 ACOT9 SAT = SAT1 ENST00000486479.1 3300 24329024 24331432 − seg_190 24328750 24333600 ZFX SAT = SAT1 ENST00000536351.1 3301 24328979 24331432 − seg_190 24328750 24333600 ZFX SAT = SAT1 ENST00000413856.1 3302 24380878 24383541 + seg_191 24379500 24384800 PDK3 SAT = SAT1 ENST00000436466.1 3303 24380878 24383495 + seg_191 24379500 24384800 PDK3 SAT = SAT1 ENST00000441463.2 3304 24483573 24557954 + seg_192 24483500 24485500 PDK3 SAT = SAT1 ENST00000379162.4 3305 24483338 24552542 + seg_192 24483500 24485500 PDK3 SAT = SAT1 ENST00000441463.2 3306 24483573 24557954 + seg_193 24544700 24546050 PDK3 SAT = SAT1 ENST00000379162.4 3307 24483338 24552542 + seg_193 24544700 24546050 PDK3 SAT = SAT1 ENST00000379044.4 3308 25021811 25034065 − seg_194 25026650 25045650 ARX SAT = SAT1 ENST00000438281.1 3309 25047662 25048352 + seg_195 25046800 25048550 ARX SAT = SAT1 ENST00000432886.2 3310 38008589 38080177 − seg_200 38037000 38038300 SRPX RPGR ENST00000378533.3 3311 38008592 38080152 − seg_200 38037000 38038300 SRPX RPGR ENST00000538295.1 3312 38008589 38080177 − seg_200 38037000 38038300 SRPX RPGR ENST00000343800.6 3313 38008595 38080696 − seg_200 38037000 38038300 SRPX RPGR ENST00000544439.1 3314 38008589 38080177 − seg_200 38037000 38038300 SRPX RPGR ENST00000465127.1 3315 37208583 38546928 + seg_200 38037000 38038300 SRPX RPGR ENST00000423919.1 3316 38080644 38082920 + seg_201 38078450 38080750 SRPX RPGR ENST00000432886.2 3317 38008589 38080177 − seg_201 38078450 38080750 SRPX RPGR ENST00000378533.3 3318 38008592 38080152 − seg_201 38078450 38080750 SRPX RPGR ENST00000538295.1 3319 38008589 38080177 − seg_201 38078450 38080750 SRPX RPGR ENST00000343800.6 3320 38008595 38080696 − seg_201 38078450 38080750 SRPX RPGR ENST00000544439.1 3321 38008589 38080177 − seg_201 38078450 38080750 SRPX RPGR ENST00000465127.1 3322 37208583 38546928 + seg_201 38078450 38080750 SRPX RPGR ENST00000465127.1 3323 37208583 38546928 + seg_202 38195400 38197000 RPGR RPGR ENST00000488812.1 3324 38211858 38262920 + seg_203 38211800 38213050 OTC OTC ENST00000039007.4 3325 38211798 38280703 + seg_203 38211800 38213050 OTC OTC ENST00000465127.1 3326 37208583 38546928 + seg_203 38211800 38213050 OTC OTC ENST00000480976.1 3327 38420797 38533519 + seg_204 38475900 38477150 TSPAN7 OTC ENST00000494037.1 3328 38471575 38530670 + seg_204 38475900 38477150 TSPAN7 OTC ENST00000488893.1 3329 38429936 38535070 + seg_204 38475900 38477150 TSPAN7 OTC ENST00000471410.1 3330 38420795 38547422 + seg_204 38475900 38477150 TSPAN7 OTC ENST00000545599.1 3331 38420797 38547525 + seg_204 38475900 38477150 TSPAN7 OTC ENST00000378482.2 3332 38420623 38548167 + seg_204 38475900 38477150 TSPAN7 OTC ENST00000422612.2 3333 38420795 38547422 + seg_204 38475900 38477150 TSPAN7 OTC ENST00000286824.6 3334 38420797 38547651 + seg_204 38475900 38477150 TSPAN7 OTC ENST00000475216.1 3335 38420797 38547525 + seg_204 38475900 38477150 TSPAN7 OTC ENST00000465127.1 3336 37208583 38546928 + seg_204 38475900 38477150 TSPAN7 OTC ENST00000480976.1 3337 38420797 38533519 + seg_205 38511700 38513450 TSPAN7 OTC ENST00000494037.1 3338 38471575 38530670 + seg_205 38511700 38513450 TSPAN7 OTC ENST00000488893.1 3339 38429936 38535070 + seg_205 38511700 38513450 TSPAN7 OTC ENST00000471410.1 3340 38420795 38547422 + seg_205 38511700 38513450 TSPAN7 OTC ENST00000545599.1 3341 38420797 38547525 + seg_205 38511700 38513450 TSPAN7 OTC ENST00000378482.2 3342 38420623 38548167 + seg_205 38511700 38513450 TSPAN7 OTC ENST00000422612.2 3343 38420795 38547422 + seg_205 38511700 38513450 TSPAN7 OTC ENST00000286824.6 3344 38420797 38547651 + seg_205 38511700 38513450 TSPAN7 OTC ENST00000475216.1 3345 38420797 38547525 + seg_205 38511700 38513450 TSPAN7 OTC ENST00000465127.1 3346 37208583 38546928 + seg_205 38511700 38513450 TSPAN7 OTC ENST00000471410.1 3347 38420795 38547422 + seg_206 38537300 38539300 TSPAN7 OTC ENST00000545599.1 3348 38420797 38547525 + seg_206 38537300 38539300 TSPAN7 OTC ENST00000378482.2 3349 38420623 38548167 + seg_206 38537300 38539300 TSPAN7 OTC ENST00000422612.2 3350 38420795 38547422 + seg_206 38537300 38539300 TSPAN7 OTC ENST00000286824.6 3351 38420797 38547651 + seg_206 38537300 38539300 TSPAN7 OTC ENST00000419600.2 3352 38525350 38548169 + seg_206 38537300 38539300 TSPAN7 OTC ENST00000475216.1 3353 38420797 38547525 + seg_206 38537300 38539300 TSPAN7 OTC ENST00000465127.1 3354 37208583 38546928 + seg_206 38537300 38539300 TSPAN7 OTC ENST00000456333.1 3355 40594652 40597950 + seg_213 40597850 40599200 MED14 CSNB1 = NYX ENST00000478993.1 3356 41192651 41223725 + seg_217 41209650 41210900 DDX3X CSNB1 = NYX ENST00000378062.5 3357 43808022 43832750 − seg_219 43831100 43833350 NDP NDP ENST00000470584.1 3358 43808928 43832632 − seg_219 43831100 43833350 NDP NDP ENST00000397254.2 3359 43888578 43890167 + seg_220 43888350 43890300 NDP NDP ENST00000378056.5 3360 44094631 44202923 − seg_221 44172850 44174600 EFHC2 NDP ENST00000441230.1 3361 44007958 44202911 − seg_221 44172850 44174600 EFHC2 NDP ENST00000333807.6 3362 44007129 44202923 − seg_221 44172850 44174600 EFHC2 NDP ENST00000420999.1 3363 44007911 44202918 − seg_221 44172850 44174600 EFHC2 NDP ENST00000414772.1 3364 45707328 45710447 − seg_224 45708500 45709500 KRBOX4 UBA1 ENST00000456532.1 3365 45707509 45710920 − seg_224 45708500 45709500 KRBOX4 UBA1 ENST00000491894.1 3366 46465730 46480451 − seg_226 46465650 46466700 CHST7 UBA1 ENST00000464933.1 3367 46465696 46495069 − seg_226 46465650 46466700 CHST7 UBA1 ENST00000489574.1 3368 46465730 46529121 − seg_226 46465650 46466700 CHST7 UBA1 ENST00000328306.4 3369 46464753 46618490 − seg_226 46465650 46466700 CHST7 UBA1 ENST00000377073.3 3370 47229982 47273704 + seg_230 47232600 47233700 ZNF157 UBA1 ENST00000403001.3 3371 48046211 48051817 − seg_236 48045350 48046450 SSX5 WAS ENST00000311798.1 3372 48045656 48056199 − seg_236 48045350 48046450 SSX5 WAS ENST00000347757.1 3373 48045656 48056199 − seg_236 48045350 48046450 SSX5 WAS ENST00000376923.1 3374 48045656 48054794 − seg_236 48045350 48046450 SSX5 WAS ENST00000403001.3 3375 48046211 48051817 − seg_237 48051300 48052550 SSX5 WAS ENST00000311798.1 3376 48045656 48056199 − seg_237 48051300 48052550 SSX5 WAS ENST00000347757.1 3377 48045656 48056199 − seg_237 48051300 48052550 SSX5 WAS ENST00000376923.1 3378 48045656 48054794 − seg_237 48051300 48052550 SSX5 WAS ENST00000407081.2 3379 48156255 48165614 − seg_240 48155300 48156750 SSX9 WAS ENST00000376909.1 3380 48154885 48165675 − seg_240 48155300 48156750 SSX9 WAS ENST00000438101.1 3381 49429447 49433283 − seg_247 49429000 49430200 PAGE1 CLCN5 ENST00000474146.1 3382 49595287 49598570 + seg_250 49594450 49595600 PAGE4 CLCN5 ENST00000376141.1 3383 49593863 49598576 + seg_250 49594450 49595600 PAGE4 CLCN5 ENST00000218068.6 3384 49593906 49598576 + seg_250 49594450 49595600 PAGE4 CLCN5 ENST00000478785.1 3385 49593951 49595934 + seg_250 49594450 49595600 PAGE4 CLCN5 ENST00000491883.1 3386 51425000 51425485 − seg_252 51423850 51425400 GSPT2 CLCN5 ENST00000477634.1 3387 51928008 51935364 + seg_256 51935050 51936300 MAGED4 MRX1 = IQSEC2 ENST00000497416.1 3388 51933114 51935352 + seg_256 51935050 51936300 MAGED4 MRX1 = IQSEC2 ENST00000416960.1 3389 51927919 51935364 + seg_256 51935050 51936300 MAGED4 MRX1 = IQSEC2 ENST00000497348.1 3390 51934138 51935280 + seg_256 51935050 51936300 MAGED4 MRX1 = IQSEC2 ENST00000488430.1 3391 51927983 51935364 + seg_256 51935050 51936300 MAGED4 MRX1 = IQSEC2 ENST00000459685.1 3392 51927972 51935364 + seg_256 51935050 51936300 MAGED4 MRX1 = IQSEC2 ENST00000471932.1 3393 51927943 51935364 + seg_256 51935050 51936300 MAGED4 MRX1 = IQSEC2 ENST00000479281.1 3394 51930729 51935364 + seg_256 51935050 51936300 MAGED4 MRX1 = IQSEC2 ENST00000375626.3 3395 51928008 51935364 + seg_256 51935050 51936300 MAGED4 MRX1 = IQSEC2 ENST00000498483.1 3396 51928008 51935364 + seg_256 51935050 51936300 MAGED4 MRX1 = IQSEC2 ENST00000375563.4 3397 52541053 52545988 − seg_258 52543850 52545000 XAGE1E MRX1 = IQSEC2 ENST00000375567.3 3398 52541053 52546033 − seg_258 52543850 52545000 XAGE1E MRX1 = IQSEC2 ENST00000375570.1 3399 52541053 52546189 − seg_258 52543850 52545000 XAGE1E MRX1 = IQSEC2 ENST00000463689.1 3400 52541053 52544001 − seg_258 52543850 52545000 XAGE1E MRX1 = IQSEC2 ENST00000429372.2 3401 52541053 52546197 − seg_258 52543850 52545000 XAGE1E MRX1 = IQSEC2 ENST00000298181.5 3402 52673140 52683950 − seg_261 52673200 52675150 SSX7 MRX1 = IQSEC2 ENST00000375496.2 3403 52854316 52858317 − seg_264 52854250 52855350 XAGE5 MRX1 = IQSEC2 ENST00000502642.1 3404 52853318 52858317 − seg_264 52854250 52855350 XAGE5 MRX1 = IQSEC2 ENST00000305824.4 3405 52853316 52858317 − seg_264 52854250 52855350 XAGE5 MRX1 = IQSEC2 ENST00000346279.3 3406 52891557 52897099 − seg_265 52896900 52898050 XAGE3 MRX1 = IQSEC2 ENST00000515858.1 3407 52994637 53024651 − seg_266 52996700 52998100 FAM156A MRX1 = IQSEC2 ENST00000451084.2 3408 52977462 53024634 − seg_266 52996700 52998100 FAM156A MRX1 = IQSEC2 ENST00000416923.1 3409 52977768 53024632 − seg_266 52996700 52998100 FAM156A MRX1 = IQSEC2 ENST00000511863.1 3410 52984353 53024651 − seg_266 52996700 52998100 FAM156A MRX1 = IQSEC2 ENST00000414076.2 3411 52976960 53024551 − seg_266 52996700 52998100 FAM156A MRX1 = IQSEC2 ENST00000505988.1 3412 52977787 53024551 − seg_266 52996700 52998100 FAM156A MRX1 = IQSEC2 ENST00000512364.1 3413 52976462 53024644 − seg_266 52996700 52998100 FAM156A MRX1 = IQSEC2 ENST00000505062.1 3414 52994760 53024651 − seg_266 52996700 52998100 FAM156A MRX1 = IQSEC2 ENST00000475552.1 3415 52977803 53024634 − seg_266 52996700 52998100 FAM156A MRX1 = IQSEC2 ENST00000432596.1 3416 53352187 53352973 + seg_268 53347500 53352900 IQSEC2 MRX1 = IQSEC2 ENST00000396435.3 3417 53262058 53350522 − seg_268 53347500 53352900 IQSEC2 MRX1 = IQSEC2 ENST00000375368.5 3418 53262059 53350522 − seg_268 53347500 53352900 IQSEC2 MRX1 = IQSEC2 ENST00000375159.2 3419 54224757 54360106 − seg_275 54317850 54320600 WNK3 FGD1 ENST00000354646.2 3420 54219258 54384438 − seg_275 54317850 54320600 WNK3 FGD1 ENST00000375169.3 3421 54219256 54384438 − seg_275 54317850 54320600 WNK3 FGD1 ENST00000375135.3 3422 54471887 54522599 − seg_278 54495250 54496750 FGD1 FGD1 ENST00000537277.1 3423 54475243 54522322 − seg_278 54495250 54496750 FGD1 FGD1 ENST00000498636.1 3424 55035546 55046866 − seg_279 55040550 55042350 ALAS2 ALAS2 ENST00000335854.4 3425 55035522 55057410 − seg_279 55040550 55042350 ALAS2 ALAS2 ENST00000396198.3 3426 55035488 55057410 − seg_279 55040550 55042350 ALAS2 ALAS2 ENST00000330807.5 3427 55035488 55057497 − seg_279 55040550 55042350 ALAS2 ALAS2 ENST00000473660.1 3428 55210389 55210459 − seg_282 55209800 55211250 MTRNR2L10 ALAS2 ENST00000440433.1 3429 64770778 64772301 − seg_285 64771000 64772400 LAS1L AR ENST00000491714.1 3430 67652773 67653755 − seg_286 67652200 67654900 OPHN1 AR ENST00000540071.1 3431 67266504 67653369 − seg_286 67652200 67654900 OPHN1 AR ENST00000355520.5 3432 67262186 67653647 − seg_286 67652200 67654900 OPHN1 AR ENST00000338901.3 3433 68835911 68890104 + seg_291 68836050 68838050 EDA ED1 = EDA ENST00000374548.1 3434 68835911 69177354 + seg_291 68836050 68838050 EDA ED1 = EDA ENST00000525810.1 3435 68835911 69080892 + seg_291 68836050 68838050 EDA ED1 = EDA ENST00000513754.2 3436 68835911 69177327 + seg_291 68836050 68838050 EDA ED1 = EDA ENST00000533317.1 3437 68835911 69177327 + seg_291 68836050 68838050 EDA ED1 = EDA ENST00000527388.1 3438 68835911 69080892 + seg_291 68836050 68838050 EDA ED1 = EDA ENST00000502251.1 3439 68835911 69177354 + seg_291 68836050 68838050 EDA ED1 = EDA ENST00000374552.4 3440 68835911 69259319 + seg_291 68836050 68838050 EDA ED1 = EDA ENST00000374553.2 3441 68835911 69259319 + seg_291 68836050 68838050 EDA ED1 = EDA ENST00000524573.1 3442 68835961 69255487 + seg_291 68836050 68838050 EDA ED1 = EDA ENST00000374548.1 3443 68835911 69177354 + seg_292 68918100 68920050 EDA ED1 = EDA ENST00000525810.1 3444 68835911 69080892 + seg_292 68918100 68920050 EDA ED1 = EDA ENST00000513754.2 3445 68835911 69177327 + seg_292 68918100 68920050 EDA ED1 = EDA ENST00000510681.2 3446 68840273 69080948 + seg_292 68918100 68920050 EDA ED1 = EDA ENST00000533317.1 3447 68835911 69177327 + seg_292 68918100 68920050 EDA ED1 = EDA ENST00000527388.1 3448 68835911 69080892 + seg_292 68918100 68920050 EDA ED1 = EDA ENST00000502251.1 3449 68835911 69177354 + seg_292 68918100 68920050 EDA ED1 = EDA ENST00000530321.1 3450 68840300 69080892 + seg_292 68918100 68920050 EDA ED1 = EDA ENST00000503592.1 3451 68840254 69253260 + seg_292 68918100 68920050 EDA ED1 = EDA ENST00000374552.4 3452 68835911 69259319 + seg_292 68918100 68920050 EDA ED1 = EDA ENST00000374553.2 3453 68835911 69259319 + seg_292 68918100 68920050 EDA ED1 = EDA ENST00000524573.1 3454 68835961 69255487 + seg_292 68918100 68920050 EDA ED1 = EDA ENST00000342206.6 3455 69353299 69386174 + seg_293 69352950 69354000 IGBP1 ED1 = EDA ENST00000356413.4 3456 69353313 69386174 + seg_293 69352950 69354000 IGBP1 ED1 = EDA ENST00000374355.3 3457 69672155 69725337 + seg_294 69697700 69699050 DLG3 GJB1 ENST00000194900.4 3458 69664711 69725337 + seg_294 69697700 69699050 DLG3 GJB1 ENST00000542398.1 3459 69674946 69725335 + seg_294 69697700 69699050 DLG3 GJB1 ENST00000466140.1 3460 69698968 69719753 + seg_294 69697700 69699050 DLG3 GJB1 ENST00000494493.1 3461 69674957 69712087 + seg_294 69697700 69699050 DLG3 GJB1 ENST00000489733.1 3462 69674953 69718408 + seg_294 69697700 69699050 DLG3 GJB1 ENST00000463252.1 3463 69664986 69723796 + seg_294 69697700 69699050 DLG3 GJB1 ENST00000374360.3 3464 69664819 69725337 + seg_294 69697700 69699050 DLG3 GJB1 ENST00000447581.1 3465 70435109 70443810 + seg_296 70436000 70437500 GJB1 GJB1 ENST00000374029.1 3466 70435044 70445050 + seg_296 70436000 70437500 GJB1 GJB1 ENST00000374022.3 3467 70435062 70445366 + seg_296 70436000 70437500 GJB1 GJB1 ENST00000373981.1 3468 70469054 70474425 − seg_297 70474400 70475600 ZMYM3 GJB1 ENST00000373988.1 3469 70459476 70474910 − seg_297 70474400 70475600 ZMYM3 GJB1 ENST00000373998.1 3470 70459474 70474996 − seg_297 70474400 70475600 ZMYM3 GJB1 ENST00000353904.2 3471 70459474 70474499 − seg_297 70474400 70475600 ZMYM3 GJB1 ENST00000422194.1 3472 70882845 70885603 − seg_298 70877700 70883450 CXCR3 GJB1 ENST00000433410.1 3473 70882848 70884121 − seg_298 70877700 70883450 CXCR3 GJB1 ENST00000508574.1 3474 70917046 70926305 + seg_299 70919900 70923050 CXCR3 GJB1 ENST00000508574.1 3475 70917046 70926305 + seg_300 70926200 70950300 CXCR3 GJB1 ENST00000417668.1 3476 70938992 70939460 + seg_300 70926200 70950300 CXCR3 GJB1 ENST00000457716.1 3477 70939766 70940650 + seg_300 70926200 70950300 CXCR3 GJB1 ENST00000535490.1 3478 70934224 70938135 − seg_300 70926200 70950300 CXCR3 GJB1 ENST00000452468.1 3479 70934221 70936237 − seg_300 70926200 70950300 CXCR3 GJB1 ENST00000456199.1 3480 70981815 70982283 − seg_301 70972100 70989450 CXCR3 GJB1 ENST00000439926.1 3481 70980625 70981509 − seg_301 70972100 70989450 CXCR3 GJB1 ENST00000440412.1 3482 70985038 70987054 + seg_301 70972100 70989450 CXCR3 GJB1 ENST00000542739.1 3483 70983140 70987051 + seg_301 70972100 70989450 CXCR3 GJB1 ENST00000408757.1 3484 70979235 70979305 − seg_301 70972100 70989450 CXCR3 GJB1 ENST00000515698.1 3485 70994970 71004228 − seg_303 70997850 70999500 NHSL2 GJB1 ENST00000515698.1 3486 70994970 71004228 − seg_304 71003450 71005550 NHSL2 GJB1 ENST00000540800.1 3487 71130938 71363424 + seg_307 71238100 71239150 NHSL2 GJB1 ENST00000540800.1 3488 71130938 71363424 + seg_308 71261650 71263400 RGAG4 GJB1 ENST00000540800.1 3489 71130938 71363424 + seg_309 71319750 71321300 RGAG4 GJB1 ENST00000479991.1 3490 71346960 71351751 − seg_310 71348750 71353050 RGAG4 GJB1 ENST00000545866.1 3491 71346958 71351758 − seg_310 71348750 71353050 RGAG4 GJB1 ENST00000513469.1 3492 71352000 71354556 + seg_310 71348750 71353050 RGAG4 GJB1 ENST00000540800.1 3493 71130938 71363424 + seg_310 71348750 71353050 RGAG4 GJB1 ENST00000439980.2 3494 71401615 71522776 + seg_311 71503150 71504200 RPS4X GJB1 ENST00000439980.2 3495 71401615 71522776 + seg_312 71512450 71513550 CITED1 GJB1 ENST00000246139.5 3496 71521500 71526837 − seg_313 71526450 71528800 CITED1 GJB1 ENST00000453707.2 3497 71521488 71527000 − seg_313 71526450 71528800 CITED1 GJB1 ENST00000454225.1 3498 71522056 71526757 − seg_313 71526450 71528800 CITED1 GJB1 ENST00000373619.3 3499 71521497 71527037 − seg_313 71526450 71528800 CITED1 GJB1 ENST00000365612.1 3500 71945976 71946190 − seg_314 71945800 71946950 PHKA1 GJB1 ENST00000276033.4 3501 73640638 73753752 + seg_319 73642000 73643200 SLC16A2 ABCB7 ENST00000394563.3 3502 85339719 85341344 − seg_320 85339200 85340950 CHM CHM ENST00000372964.1 3503 100098322 100129198 − seg_321 100106050 100107200 NOX1 BTK ENST00000372961.3 3504 100098334 100129334 − seg_321 100106050 100107200 NOX1 BTK ENST00000372966.3 3505 100098313 100129334 − seg_321 100106050 100107200 NOX1 BTK ENST00000217885.5 3506 100098825 100129198 − seg_321 100106050 100107200 NOX1 BTK ENST00000372960.4 3507 100098941 100129128 − seg_321 100106050 100107200 NOX1 BTK ENST00000372957.2 3508 100098941 100129334 − seg_321 100106050 100107200 NOX1 BTK ENST00000372964.1 3509 100098322 100129198 − seg_322 100119950 100121600 NOX1 BTK ENST00000372961.3 3510 100098334 100129334 − seg_322 100119950 100121600 NOX1 BTK ENST00000372966.3 3511 100098313 100129334 − seg_322 100119950 100121600 NOX1 BTK ENST00000217885.5 3512 100098825 100129198 − seg_322 100119950 100121600 NOX1 BTK ENST00000372960.4 3513 100098941 100129128 − seg_322 100119950 100121600 NOX1 BTK ENST00000372957.2 3514 100098941 100129334 − seg_322 100119950 100121600 NOX1 BTK ENST00000538510.1 3515 100486534 100519485 + seg_325 100514900 100516350 DRP2 BTK ENST00000541709.1 3516 100474933 100519485 + seg_325 100514900 100516350 DRP2 BTK ENST00000402866.1 3517 100474758 100519486 + seg_325 100514900 100516350 DRP2 BTK ENST00000395209.3 3518 100474775 100519486 + seg_325 100514900 100516350 DRP2 BTK ENST00000324762.6 3519 100523245 100542793 − seg_326 100532400 100533600 TAF7L BTK ENST00000372907.3 3520 100523241 100548045 − seg_326 100532400 100533600 TAF7L BTK ENST00000356784.1 3521 100523848 100546324 − seg_326 100532400 100533600 TAF7L BTK ENST00000372905.2 3522 100523242 100548059 − seg_326 100532400 100533600 TAF7L BTK ENST00000325117.7 3523 101801665 101803141 − seg_327 101800900 101804000 TMSB15A GLA ENST00000372680.1 3524 102528619 102531800 − seg_330 102530950 102533100 TCEAL5 GLA ENST00000449185.1 3525 102564600 102565863 − seg_331 102564900 102566400 BEX2 GLA ENST00000372674.1 3526 102564430 102565935 − seg_331 102564900 102566400 BEX2 GLA ENST00000372677.3 3527 102564274 102565974 − seg_331 102564900 102566400 BEX2 GLA ENST00000536889.1 3528 102564282 102565883 − seg_331 102564900 102566400 BEX2 GLA ENST00000332431.4 3529 102585124 102587254 + seg_332 102584350 102585450 TCEAL7 GLA ENST00000372666.1 3530 102585157 102587016 + seg_332 102584350 102585450 TCEAL7 GLA ENST00000372628.1 3531 102862379 102864855 + seg_333 102861350 102862700 TCEAL3 GLA ENST00000447281.1 3532 103172005 103174131 − seg_337 103172500 103174800 TMSB15B TBG = SERPINA7 ENST00000455723.1 3533 103173770 103187485 + seg_337 103172500 103174800 TMSB15B TBG = SERPINA7 ENST00000419165.1 3534 103173479 103220554 + seg_337 103172500 103174800 TMSB15B TBG = SERPINA7 ENST00000448050.1 3535 103216417 103216861 − seg_338 103216000 103218450 TMSB15B TBG = SERPINA7 ENST00000451146.1 3536 103216382 103216864 − seg_338 103216000 103218450 TMSB15B TBG = SERPINA7 ENST00000540220.1 3537 103217224 103220868 + seg_338 103216000 103218450 TMSB15B TBG = SERPINA7 ENST00000436583.1 3538 103217242 103220554 + seg_338 103216000 103218450 TMSB15B TBG = SERPINA7 ENST00000419165.1 3539 103173479 103220554 + seg_338 103216000 103218450 TMSB15B TBG = SERPINA7 ENST00000422550.1 3540 103230404 103230880 + seg_339 103230800 103233250 TMSB15B TBG = SERPINA7 ENST00000423478.1 3541 103356822 103357563 + seg_346 103355850 103358850 SLC25A53 TBG = SERPINA7 ENST00000422784.1 3542 103357235 103360533 + seg_346 103355850 103358850 SLC25A53 TBG = SERPINA7 ENST00000537356.1 3543 103357107 103360531 + seg_346 103355850 103358850 SLC25A53 TBG = SERPINA7 ENST00000357421.4 3544 103343898 103401708 − seg_346 103355850 103358850 SLC25A53 TBG = SERPINA7 ENST00000372582.1 3545 103810996 105011822 + seg_347 103812100 103813500 IL1RAPL2 TBG = SERPINA7 ENST00000418562.1 3546 105937024 106033435 + seg_349 105968700 105970600 RNF128 TBG = SERPINA7 ENST00000324342.3 3547 105937068 106040223 + seg_349 105968700 105970600 RNF128 TBG = SERPINA7 ENST00000255499.2 3548 105969894 106040223 + seg_349 105968700 105970600 RNF128 TBG = SERPINA7 ENST00000357242.5 3549 106045910 106119375 + seg_350 106044350 106046150 TBC1D8B TBG = SERPINA7 ENST00000481617.2 3550 106045935 106073313 + seg_350 106044350 106046150 TBC1D8B TBG = SERPINA7 ENST00000276175.3 3551 106046043 106117347 + seg_350 106044350 106046150 TBC1D8B TBG = SERPINA7 ENST00000310452.2 3552 106045919 106093061 + seg_350 106044350 106046150 TBC1D8B TBG = SERPINA7 ENST00000372453.3 3553 106449862 106487473 + seg_351 106482900 106485150 PIH1D3 PRPS1 ENST00000535523.1 3554 106449862 106487472 + seg_351 106482900 106485150 PIH1D3 PRPS1 ENST00000336387.4 3555 106450378 106486594 + seg_351 106482900 106485150 PIH1D3 PRPS1 ENST00000415252.1 3556 106756213 106789051 − seg_353 106766500 106768400 FRMPD3 PRPS1 ENST00000276185.4 3557 106765680 106846603 + seg_353 106766500 106768400 FRMPD3 PRPS1 ENST00000276185.4 3558 106765680 106846603 + seg_354 106839200 106841100 PRPS1 PRPS1 ENST00000439554.1 3559 106769876 106848481 + seg_354 106839200 106841100 PRPS1 PRPS1 ENST00000276185.4 3560 106765680 106846603 + seg_355 106844750 106845950 PRPS1 PRPS1 ENST00000439554.1 3561 106769876 106848481 + seg_355 106844750 106845950 PRPS1 PRPS1 ENST00000372384.2 3562 106956454 107019218 − seg_357 106984400 106985900 TSC22D3 PRPS1 ENST00000372383.4 3563 106956454 107019017 − seg_357 106984400 106985900 TSC22D3 PRPS1 ENST00000394928.2 3564 106957214 107018890 − seg_357 106984400 106985900 TSC22D3 PRPS1 ENST00000315660.4 3565 106956451 107019215 − seg_357 106984400 106985900 TSC22D3 PRPS1 ENST00000506081.1 3566 106957600 107020297 − seg_357 106984400 106985900 TSC22D3 PRPS1 ENST00000514426.1 3567 106957717 107020308 − seg_357 106984400 106985900 TSC22D3 PRPS1 ENST00000510887.1 3568 106959142 107019944 − seg_357 106984400 106985900 TSC22D3 PRPS1 ENST00000502650.1 3569 106959153 107019345 − seg_357 106984400 106985900 TSC22D3 PRPS1 ENST00000514897.1 3570 106959128 107020572 − seg_357 106984400 106985900 TSC22D3 PRPS1 ENST00000480691.2 3571 106959133 107020285 − seg_357 106984400 106985900 TSC22D3 PRPS1 ENST00000372384.2 3572 106956454 107019218 − seg_358 107012550 107013950 TSC22D3 PRPS1 ENST00000372383.4 3573 106956454 107019017 − seg_358 107012550 107013950 TSC22D3 PRPS1 ENST00000394928.2 3574 106957214 107018890 − seg_358 107012550 107013950 TSC22D3 PRPS1 ENST00000315660.4 3575 106956451 107019215 − seg_358 107012550 107013950 TSC22D3 PRPS1 ENST00000506081.1 3576 106957600 107020297 − seg_358 107012550 107013950 TSC22D3 PRPS1 ENST00000514426.1 3577 106957717 107020308 − seg_358 107012550 107013950 TSC22D3 PRPS1 ENST00000510887.1 3578 106959142 107019944 − seg_358 107012550 107013950 TSC22D3 PRPS1 ENST00000502650.1 3579 106959153 107019345 − seg_358 107012550 107013950 TSC22D3 PRPS1 ENST00000514897.1 3580 106959128 107020572 − seg_358 107012550 107013950 TSC22D3 PRPS1 ENST00000480691.2 3581 106959133 107020285 − seg_358 107012550 107013950 TSC22D3 PRPS1 ENST00000506724.1 3582 107018348 107019488 − seg_359 107015700 107021050 TSC22D3 PRPS1 ENST00000509000.1 3583 107020963 107037689 + seg_359 107015700 107021050 TSC22D3 PRPS1 ENST00000372384.2 3584 106956454 107019218 − seg_359 107015700 107021050 TSC22D3 PRPS1 ENST00000505965.1 3585 107018397 107020567 − seg_359 107015700 107021050 TSC22D3 PRPS1 ENST00000372383.4 3586 106956454 107019017 − seg_359 107015700 107021050 TSC22D3 PRPS1 ENST00000394928.2 3587 106957214 107018890 − seg_359 107015700 107021050 TSC22D3 PRPS1 ENST00000315660.4 3588 106956451 107019215 − seg_359 107015700 107021050 TSC22D3 PRPS1 ENST00000506081.1 3589 106957600 107020297 − seg_359 107015700 107021050 TSC22D3 PRPS1 ENST00000514426.1 3590 106957717 107020308 − seg_359 107015700 107021050 TSC22D3 PRPS1 ENST00000502961.1 3591 107018476 107020559 − seg_359 107015700 107021050 TSC22D3 PRPS1 ENST00000510887.1 3592 106959142 107019944 − seg_359 107015700 107021050 TSC22D3 PRPS1 ENST00000502650.1 3593 106959153 107019345 − seg_359 107015700 107021050 TSC22D3 PRPS1 ENST00000514897.1 3594 106959128 107020572 − seg_359 107015700 107021050 TSC22D3 PRPS1 ENST00000480691.2 3595 106959133 107020285 − seg_359 107015700 107021050 TSC22D3 PRPS1 ENST00000451923.1 3596 107068985 107084611 + seg_360 107067200 107071350 MID2 PRPS1 ENST00000443968.2 3597 107069644 107170423 + seg_360 107067200 107071350 M1D2 PRPS1 ENST00000262843.6 3598 107069109 107170423 + seg_360 107067200 107071350 MID2 PRPS1 ENST00000430140.1 3599 107137827 107179210 − seg_361 107167050 107168350 TEX13B PRPS1 ENST00000474517.1 3600 107160732 107169702 + seg_361 107167050 107168350 TEX13B PRPS1 ENST00000443968.2 3601 107069644 107170423 + seg_361 107167050 107168350 TEX13B PRPS1 ENST00000262843.6 3602 107069109 107170423 + seg_361 107167050 107168350 TEX13B PRPS1 ENST00000415430.3 3603 107288200 107322414 + seg_362 107318400 107320100 PSMD10 COL4A5 ENST00000217957.5 3604 107288244 107322327 + seg_362 107318400 107320100 PSMD10 COL4A5 ENST00000545689.1 3605 107399275 107681556 − seg_363 107680300 107682050 COL4A6 COL4A5 ENST00000538570.1 3606 107399275 107681556 − seg_363 107680300 107682050 COL4A6 COL4A5 ENST00000394872.2 3607 107398838 107681658 − seg_363 107680300 107682050 COL4A6 COL4A5 ENST00000461897.1 3608 107510872 107681660 − seg_363 107680300 107682050 COL4A6 COL4A5 ENST00000468338.1 3609 107457022 107682702 − seg_363 107680300 107682050 COL4A6 COL4A5 ENST00000541389.1 3610 107399121 107681660 − seg_363 107680300 107682050 COL4A6 COL4A5 ENST00000334504.7 3611 107398837 107681660 − seg_363 107680300 107682050 COL4A6 COL4A5 ENST00000372216.4 3612 107398837 107682702 − seg_363 107680300 107682050 COL4A6 COL4A5 ENST00000477085.1 3613 107510872 107682727 − seg_363 107680300 107682050 COL4A6 COL4A5 ENST00000508186.1 3614 107683236 107940014 + seg_364 107800800 107802650 COL4A5 COL4A5 ENST00000470339.1 3615 107683172 107812265 + seg_364 107800800 107802650 COL4A5 COL4A5 ENST00000328300.6 3616 107683112 107940771 + seg_364 107800800 107802650 COL4A5 COL4A5 ENST00000361603.2 3617 107683112 107940775 + seg_364 107800800 107802650 COL4A5 COL4A5 ENST00000520821.1 3618 109602044 109694109 + seg_367 109664500 109668200 RGAG1 COL4A5 ENST00000465301.2 3619 109662285 109699562 + seg_367 109664500 109668200 RGAG1 COL4A5 ENST00000372057.1 3620 109439638 109683461 − seg_367 109664500 109668200 RGAG1 COL4A5 ENST00000520821.1 3621 109602044 109694109 + seg_368 109675200 109677300 RGAG1 COL4A5 ENST00000465301.2 3622 109662285 109699562 + seg_368 109675200 109677300 RGAG1 COL4A5 ENST00000372057.1 3623 109439638 109683461 − seg_368 109675200 109677300 RGAG1 COL4A5 ENST00000520821.1 3624 109602044 109694109 + seg_369 109681600 109683350 RGAG1 COL4A5 ENST00000465301.2 3625 109662285 109699562 + seg_369 109681600 109683350 RGAG1 COL4A5 ENST00000372057.1 3626 109439638 109683461 − seg_369 109681600 109683350 RGAG1 COL4A5 ENST00000520821.1 3627 109602044 109694109 + seg_370 109687600 109689250 RGAG1 COL4A5 ENST00000465301.2 3628 109662285 109699562 + seg_370 109687600 109689250 RGAG1 COL4A5 ENST00000493351.1 3629 109764358 109764924 + seg_371 109763200 109764700 RGAG1 COL4A5 ENST00000218054.4 3630 109917092 110039076 − seg_372 110037400 110040400 CHRDL1 COL4A5 ENST00000394797.4 3631 109918473 110038993 − seg_372 110037400 110040400 CHRDL1 COL4A5 ENST00000434224.1 3632 109917092 110039286 − seg_372 110037400 110040400 CHRDL1 COL4A5 ENST00000372045.1 3633 109917084 110038993 − seg_372 110037400 110040400 CHRDL1 COL4A5 ENST00000482160.1 3634 109919169 110039047 − seg_372 110037400 110040400 CHRDL1 COL4A5 ENST00000372042.1 3635 109919004 110039039 − seg_372 110037400 110040400 CHRDL1 COL4A5 ENST00000444321.2 3636 109919285 110039047 − seg_372 110037400 110040400 CHRDL1 COL4A5 ENST00000446737.1 3637 110187513 110464146 + seg_374 110338150 110339500 PAK3 COL4A5 ENST00000425146.1 3638 110187513 110464146 + seg_374 110338150 110339500 PAK3 COL4A5 ENST00000317135.8 3639 114345185 114468635 − seg_381 114467100 114468700 LRCH2 COL4A5 ENST00000536655.1 3640 114345189 114468627 − seg_381 114467100 114468700 LRCH2 COL4A5 ENST00000538422.1 3641 114345686 114468628 − seg_381 114467100 114468700 LRCH2 COL4A5 ENST00000451869.1 3642 114957297 114959381 + seg_382 114956100 114958000 RP1-241P17.4 COL4A5 ENST00000415394.1 3643 114957343 114959383 + seg_382 114956100 114958000 RP1-241P17.4 COL4A5 ENST00000436163.1 3644 117250225 117250763 − seg_383 117249800 117250800 KLHL13 COL4A5 ENST00000371882.1 3645 117031776 117250761 − seg_383 117249800 117250800 KLHL13 COL4A5 ENST00000540167.1 3646 117031777 117250828 − seg_383 117249800 117250800 KLHL13 COL4A5 ENST00000541812.1 3647 117031777 117251303 − seg_383 117249800 117250800 KLHL13 COL4A5 ENST00000545703.1 3648 117031777 117250828 − seg_383 117249800 117250800 KLHL13 COL4A5 ENST00000371642.1 3649 117861565 117895483 + seg_384 117862300 117863400 IL13RA1 COL4A5 ENST00000371666.3 3650 117861535 117928502 + seg_384 117862300 117863400 IL13RA1 COL4A5 ENST00000310164.2 3651 117957753 117960931 + seg_386 117956850 117963900 ZCCHC12 COL4A5 ENST00000481285.1 3652 118108581 118151946 + seg_390 118109050 118110300 LONRF3 COL4A5 ENST00000304778.7 3653 118108581 118152318 + seg_390 118109050 118110300 LONRF3 COL4A5 ENST00000439603.1 3654 118109325 118151950 + seg_390 118109050 118110300 LONRF3 COL4A5 ENST00000371628.3 3655 118108713 118151892 + seg_390 118109050 118110300 LONRF3 COL4A5 ENST00000422289.2 3656 118110295 118151947 + seg_390 118109050 118110300 LONRF3 COL4A5 ENST00000472173.1 3657 118110295 118151946 + seg_390 118109050 118110300 LONRF3 COL4A5 ENST00000365713.2 3658 118108581 118156888 + seg_390 118109050 118110300 LONRF3 COL4A5 ENST00000440399.1 3659 118212598 118223411 − seg_392 118212900 118215850 KIAA1210 OCRL ENST00000402510.2 3660 118212598 118284542 − seg_392 118212900 118215850 KIAA1210 OCRL ENST00000402510.2 3661 118212598 118284542 − seg_393 118282850 118287450 KIAA1210 OCRL ENST00000535419.1 3662 118370288 118378428 + seg_396 118366950 118370450 PGRMC1 OCRL ENST00000217971.7 3663 118370216 118378429 + seg_396 118366950 118370450 PGRMC1 OCRL ENST00000428222.1 3664 118425492 118469573 + seg_397 118441450 118445300 PGRMC1 OCRL ENST00000428222.1 3665 118425492 118469573 + seg_398 118449700 118451000 PGRMC1 OCRL ENST00000428222.1 3666 118425492 118469573 + seg_399 118457400 118458500 SLC25A43 OCRL ENST00000413240.1 3667 118490264 118527558 − seg_401 118493600 118495250 SLC25A43 OCRL ENST00000413240.1 3668 118490264 118527558 − seg_402 118496550 118498200 SLC25A43 OCRL ENST00000413240.1 3669 118490264 118527558 − seg_403 118503050 118504750 SLC25A43 OCRL ENST00000511924.1 3670 118513675 118514067 + seg_404 118513250 118514500 SLC25A43 OCRL ENST00000413240.1 3671 118490264 118527558 − seg_404 118513250 118514500 SLC25A43 OCRL ENST00000454625.1 3672 119144675 119149501 − seg_409 119146350 119147850 RHOXF2B OCRL ENST00000454625.1 3673 119144675 119149501 − seg_410 119149100 119157100 RHOXF2B OCRL ENST00000218008.3 3674 119495967 119516226 + seg_412 119504000 119505500 ATP1B4 OCRL ENST00000539306.1 3675 119495997 119513514 + seg_412 119504000 119505500 ATP1B4 OCRL ENST00000361319.3 3676 119495967 119516226 + seg_412 119504000 119505500 ATP1B4 OCRL ENST00000218008.3 3677 119495967 119516226 + seg_413 119514900 119515950 ATP1B4 OCRL ENST00000361319.3 3678 119495967 119516226 + seg_413 119514900 119515950 ATP1B4 OCRL ENST00000427955.1 3679 119866948 119867250 + seg_414 119865950 119867450 C1GALT1C1 OCRL ENST00000479118.1 3680 122318412 122387553 + seg_416 122316650 122320500 GRIA3 OCRL ENST00000371264.3 3681 122318152 122338534 + seg_416 122316650 122320500 GRIA3 OCRL ENST00000371266.1 3682 122318006 122338534 + seg_416 122316650 122320500 GRIA3 OCRL ENST00000335161.8 3683 122318224 122338270 + seg_416 122316650 122320500 GRIA3 OCRL ENST00000541091.1 3684 122318765 122551942 + seg_416 122316650 122320500 GRIA3 OCRL ENST00000371251.1 3685 122318336 122616897 + seg_416 122316650 122320500 GRIA3 OCRL ENST00000264357.5 3686 122318096 122624756 + seg_416 122316650 122320500 GRIA3 OCRL ENST00000371256.5 3687 122318336 122624766 + seg_416 122316650 122320500 GRIA3 OCRL ENST00000542149.1 3688 122318224 122622587 + seg_416 122316650 122320500 GRIA3 OCRL ENST00000541091.1 3689 122318765 122551942 + seg_417 122402300 122404250 GRIA3 OCRL ENST00000371251.1 3690 122318336 122616897 + seg_417 122402300 122404250 GRIA3 OCRL ENST00000264357.5 3691 122318096 122624756 + seg_417 122402300 122404250 GRIA3 OCRL ENST00000371256.5 3692 122318336 122624766 + seg_417 122402300 122404250 GRIA3 OCRL ENST00000542149.1 3693 122318224 122622587 + seg_417 122402300 122404250 GRIA3 OCRL ENST00000469481.1 3694 123094545 123556514 + seg_418 123373100 123375050 SH2D1A OCRL ENST00000429967.1 3695 128779786 128788914 − seg_420 128781700 128784050 APLN OCRL ENST00000427399.1 3696 128781653 128782742 − seg_420 128781700 128784050 APLN OCRL ENST00000307484.6 3697 128779240 128788933 − seg_420 128781700 128784050 APLN OCRL ENST00000429967.1 3698 128779786 128788914 − seg_421 128788300 128792400 APLN OCRL ENST00000307484.6 3699 128779240 128788933 − seg_421 128788300 128792400 APLN OCRL ENST00000257017.4 3700 129305623 129318844 + seg_427 129312750 129314600 RAB33A OCRL ENST00000276218.2 3701 129518319 129519511 − seg_429 129518000 129519450 GPR119 OCRL ENST00000412420.1 3702 130150443 130192120 − seg_431 130182350 130183950 ARHGAP36 NYS1 = FRMD7 ENST00000370922.1 3703 130192331 130223857 + seg_432 130192100 130193800 ARHGAP36 NYS1 = FRMD7 ENST00000276211.5 3704 130192216 130223853 + seg_432 130192100 130193800 ARHGAP36 NYS1 = FRMD7 ENST00000412420.1 3705 130150443 130192120 − seg_432 130192100 130193800 ARHGAP36 NYS1 = FRMD7 ENST00000464296.1 3706 131211900 131261872 − seg_435 131217450 131219600 FRMD7 NYS1 = FRMD7 ENST00000298542.4 3707 131211023 131262048 − seg_435 131217450 131219600 FRMD7 NYS1 = FRMD7 ENST00000370879.1 3708 131211021 131228291 − seg_435 131217450 131219600 FRMD7 NYS1 = FRMD7 ENST00000464296.1 3709 131211900 131261872 − seg_436 131226100 131227550 FRMD7 NYS1 = FRMD7 ENST00000298542.4 3710 131211023 131262048 − seg_436 131226100 131227550 FRMD7 NYS1 = FRMD7 ENST00000370879.1 3711 131211021 131228291 − seg_436 131226100 131227550 FRMD7 NYS1 = FRMD7 ENST00000464296.1 3712 131211900 131261872 − seg_437 131234500 131238250 FRMD7 NYS1 = FRMD7 ENST00000298542.4 3713 131211023 131262048 − seg_437 131234500 131238250 FRMD7 NYS1 = FRMD7 ENST00000513703.1 3714 131234662 131261900 − seg_437 131234500 131238250 FRMD7 NYS1 = FRMD7 ENST00000370853.3 3715 131512177 131573718 − seg_438 131552950 131554550 MBNL3 NYS1 = FRMD7 ENST00000370857.3 3716 131506029 131573705 − seg_438 131552950 131554550 MBNL3 NYS1 = FRMD7 ENST00000370839.3 3717 131513232 131573718 − seg_438 131552950 131554550 MBNL3 NYS1 = FRMD7 ENST00000370844.1 3718 131513232 131623996 − seg_438 131552950 131554550 MBNL3 NYS1 = FRMD7 ENST00000421707.1 3719 131518691 131623043 − seg_438 131552950 131554550 MBNL3 NYS1 = FRMD7 ENST00000421483.1 3720 131351175 131564190 + seg_438 131552950 131554550 MBNL3 NYS1 = FRMD7 ENST00000436215.1 3721 131516244 131623894 − seg_438 131552950 131554550 MBNL3 NYS1 = FRMD7 ENST00000441399.1 3722 131352535 131566890 + seg_438 131552950 131554550 MBNL3 NYS1 = FRMD7 ENST00000370853.3 3723 131512177 131573718 − seg_439 131555800 131556900 MBNL3 NYS1 = FRMD7 ENST00000370857.3 3724 131506029 131573705 − seg_439 131555800 131556900 MBNL3 NYS1 = FRMD7 ENST00000370839.3 3725 131513232 131573718 − seg_439 131555800 131556900 MBNL3 NYS1 = FRMD7 ENST00000370844.1 3726 131513232 131623996 − seg_439 131555800 131556900 MBNL3 NYS1 = FRMD7 ENST00000421707.1 3727 131518691 131623043 − seg_439 131555800 131556900 MBNL3 NYS1 = FRMD7 ENST00000421483.1 3728 131351175 131564190 + seg_439 131555800 131556900 MBNL3 NYS1 = FRMD7 ENST00000436215.1 3729 131516244 131623894 − seg_439 131555800 131556900 MBNL3 NYS1 = FRMD7 ENST00000441399.1 3730 131352535 131566890 + seg_439 131555800 131556900 MBNL3 NYS1 = FRMD7 ENST00000517294.1 3731 133371077 133380237 + seg_443 133370100 133372950 CCDC160 HPRT1 = HPRT ENST00000370809.4 3732 133371077 133379808 + seg_443 133370100 133372950 CCDC160 HPRT1 = HPRT ENST00000359237.4 3733 133699868 133792513 − seg_444 133751450 133752450 PLAC1 HPRT1 = HPRT ENST00000476971.1 3734 133699907 133867666 − seg_444 133751450 133752450 PLAC1 HPRT1 = HPRT ENST00000466797.1 3735 133735587 133898352 − seg_444 133751450 133752450 PLAC1 HPRT1 = HPRT ENST00000473897.1 3736 133700540 133898293 − seg_444 133751450 133752450 PLAC1 HPRT1 = HPRT ENST00000359237.4 3737 133699868 133792513 − seg_445 133779700 133780700 PLAC1 HPRT1 = HPRT ENST00000476971.1 3738 133699907 133867666 − seg_445 133779700 133780700 PLAC1 HPRT1 = HPRT ENST00000466797.1 3739 133735587 133898352 − seg_445 133779700 133780700 PLAC1 HPRT1 = HPRT ENST00000473897.1 3740 133700540 133898293 − seg_445 133779700 133780700 PLAC1 HPRT1 = HPRT ENST00000390132.2 3741 133811215 133811301 + seg_446 133810300 133811300 PLAC1 HPRT1 = HPRT ENST00000476971.1 3742 133699907 133867666 − seg_446 133810300 133811300 PLAC1 HPRT1 = HPRT ENST00000466797.1 3743 133735587 133898352 − seg_446 133810300 133811300 PLAC1 HPRT1 = HPRT ENST00000473897.1 3744 133700540 133898293 − seg_446 133810300 133811300 PLAC1 HPRT1 = HPRT ENST00000414371.2 3745 133930819 133957005 + seg_447 133937450 133939000 FAM122C HPRT1 = HPRT ENST00000463842.1 3746 133979255 133988320 + seg_448 133984050 133985200 FAM122C HPRT1 = HPRT ENST00000460216.1 3747 133973203 133988213 + seg_448 133984050 133985200 FAM122C HPRT1 = HPRT ENST00000470657.1 3748 133941283 133986921 + seg_448 133984050 133985200 FAM122C HPRT1 = HPRT ENST00000370784.4 3749 133941223 133988640 + seg_448 133984050 133985200 FAM122C HPRT1 = HPRT ENST00000370785.3 3750 133941224 133988621 + seg_448 133984050 133985200 FAM122C HPRT1 = HPRT ENST00000445123.1 3751 133941267 133988640 + seg_448 133984050 133985200 FAM122C HPRT1 = HPRT ENST00000538706.1 3752 134155544 134156172 − seg_454 134153750 134155600 FAM127C HPRT1 = HPRT ENST00000391440.1 3753 134154543 134156559 − seg_454 134153750 134155600 FAM127C HPRT1 = HPRT ENST00000455568.1 3754 134229143 134232388 − seg_455 134232350 134234600 FAM127B HPRT1 = HPRT ENST00000433425.1 3755 134230877 134232654 − seg_455 134232350 134234600 FAM127B HPRT1 = HPRT ENST00000535837.1 3756 134232427 134232630 − seg_455 134232350 134234600 FAM127B HPRT1 = HPRT ENST00000454984.1 3757 134269077 134269698 − seg_457 134267150 134272000 CXorf48 HPRT1 = HPRT ENST00000461224.1 3758 134317162 134317234 − seg_458 134313200 134319300 CXorf48 HPRT1 = HPRT ENST00000441416.1 3759 134314179 134328610 − seg_458 134313200 134319300 CXorf48 HPRT1 = HPRT ENST00000441416.1 3760 134314179 134328610 − seg_459 134322900 134324600 CXorf48 HPRT1 = HPRT ENST00000445718.1 3761 134335662 134349163 + seg_460 134342600 134344200 CXorf48 HPRT1 = HPRT ENST00000445718.1 3762 134335662 134349163 + seg_461 134345900 134351900 CXorf48 HPRT1 = HPRT ENST00000442950.1 3763 134370740 134371295 + seg_462 134368650 134375600 ZNF75D HPRT1 = HPRT ENST00000494295.1 3764 134382867 134478012 − seg_463 134383050 134384100 ZNF75D HPRT1 = HPRT ENST00000417443.1 3765 134555868 134559682 + seg_464 134557050 134558100 ZNF449 HPRT1 = HPRT ENST00000426910.1 3766 134566885 134572559 + seg_465 134567350 134570450 DDX26B HPRT1 = HPRT ENST00000537770.1 3767 134975885 134995175 + seg_471 134974900 134976100 SAGE1 HPRT1 = HPRT ENST00000324447.3 3768 134971374 134995175 + seg_471 134974900 134976100 SAGE1 HPRT1 = HPRT ENST00000535938.1 3769 134975785 134995219 + seg_471 134974900 134976100 SAGE1 HPRT1 = HPRT ENST00000536581.1 3770 135229692 135292637 + seg_477 135230550 135237050 FHL1 HPRT1 = HPRT ENST00000420362.1 3771 135229825 135290725 + seg_477 135230550 135237050 FHL1 HPRT1 = HPRT ENST00000370690.3 3772 135229624 135293518 + seg_477 135230550 135237050 FHL1 HPRT1 = HPRT ENST00000535737.1 3773 135230737 135293518 + seg_477 135230550 135237050 FHL1 HPRT1 = HPRT ENST00000394155.2 3774 135229559 135293518 + seg_477 135230550 135237050 FHL1 HPRT1 = HPRT ENST00000458357.1 3775 135230270 135290084 + seg_477 135230550 135237050 FHL1 HPRT1 = HPRT ENST00000536581.1 3776 135229692 135292637 + seg_478 135238700 135240650 FHL1 HPRT1 = HPRT ENST00000420362.1 3777 135229825 135290725 + seg_478 135238700 135240650 FHL1 HPRT1 = HPRT ENST00000370690.3 3778 135229624 135293518 + seg_478 135238700 135240650 FHL1 HPRT1 = HPRT ENST00000535737.1 3779 135230737 135293518 + seg_478 135238700 135240650 FHL1 HPRT1 = HPRT ENST00000394155.2 3780 135229559 135293518 + seg_478 135238700 135240650 FHL1 HPRT1 = HPRT ENST00000458357.1 3781 135230270 135290084 + seg_478 135238700 135240650 FHL1 HPRT1 = HPRT ENST00000345434.3 3782 135252085 135293518 + seg_479 135247650 135253150 FHL1 HPRT1 = HPRT ENST00000536581.1 3783 135229692 135292637 + seg_479 135247650 135253150 FHL1 HPRT1 = HPRT ENST00000434885.1 3784 135250353 135290734 + seg_479 135247650 135253150 FHL1 HPRT1 = HPRT ENST00000543669.1 3785 135251455 135293518 + seg_479 135247650 135253150 FHL1 HPRT1 = HPRT ENST00000449474.1 3786 135252050 135290042 + seg_479 135247650 135253150 FHL1 HPRT1 = HPRT ENST00000420362.1 3787 135229825 135290725 + seg_479 135247650 135253150 FHL1 HPRT1 = HPRT ENST00000452016.1 3788 135249163 135290734 + seg_479 135247650 135253150 FHL1 HPRT1 = HPRT ENST00000456218.2 3789 135251962 135293518 + seg_479 135247650 135253150 FHL1 HPRT1 = HPRT ENST00000394153.2 3790 135251796 135293518 + seg_479 135247650 135253150 FHL1 HPRT1 = HPRT ENST00000370690.3 3791 135229624 135293518 + seg_479 135247650 135253150 FHL1 HPRT1 = HPRT ENST00000535737.1 3792 135230737 135293518 + seg_479 135247650 135253150 FHL1 HPRT1 = HPRT ENST00000456445.1 3793 135251835 135290729 + seg_479 135247650 135253150 FHL1 HPRT1 = HPRT ENST00000394155.2 3794 135229559 135293518 + seg_479 135247650 135253150 FHL1 HPRT1 = HPRT ENST00000458357.1 3795 135230270 135290084 + seg_479 135247650 135253150 FHL1 HPRT1 = HPRT ENST00000345434.3 3796 135252085 135293518 + seg_480 135255700 135257250 FHL1 HPRT1 = HPRT ENST00000536581.1 3797 135229692 135292637 + seg_480 135255700 135257250 FHL1 HPRT1 = HPRT ENST00000434885.1 3798 135250353 135290734 + seg_480 135255700 135257250 FHL1 HPRT1 = HPRT ENST00000543669.1 3799 135251455 135293518 + seg_480 135255700 135257250 FHL1 HPRT1 = HPRT ENST00000449474.1 3800 135252050 135290042 + seg_480 135255700 135257250 FHL1 HPRT1 = HPRT ENST00000420362.1 3801 135229825 135290725 + seg_480 135255700 135257250 FHL1 HPRT1 = HPRT ENST00000452016.1 3802 135249163 135290734 + seg_480 135255700 135257250 FHL1 HPRT1 = HPRT ENST00000456218.2 3803 135251962 135293518 + seg_480 135255700 135257250 FHL1 HPRT1 = HPRT ENST00000394153.2 3804 135251796 135293518 + seg_480 135255700 135257250 FHL1 HPRT1 = HPRT ENST00000370690.3 3805 135229624 135293518 + seg_480 135255700 135257250 FHL1 HPRT1 = HPRT ENST00000535737.1 3806 135230737 135293518 + seg_480 135255700 135257250 FHL1 HPRT1 = HPRT ENST00000456445.1 3807 135251835 135290729 + seg_480 135255700 135257250 FHL1 HPRT1 = HPRT ENST00000394155.2 3808 135229559 135293518 + seg_480 135255700 135257250 FHL1 HPRT1 = HPRT ENST00000458357.1 3809 135230270 135290084 + seg_480 135255700 135257250 FHL1 HPRT1 = HPRT ENST00000345434.3 3810 135252085 135293518 + seg_481 135261000 135263500 FHL1 HPRT1 = HPRT ENST00000536581.1 3811 135229692 135292637 + seg_481 135261000 135263500 FHL1 HPRT1 = HPRT ENST00000434885.1 3812 135250353 135290734 + seg_481 135261000 135263500 FHL1 HPRT1 = HPRT ENST00000543669.1 3813 135251455 135293518 + seg_481 135261000 135263500 FHL1 HPRT1 = HPRT ENST00000449474.1 3814 135252050 135290042 + seg_481 135261000 135263500 FHL1 HPRT1 = HPRT ENST00000420362.1 3815 135229825 135290725 + seg_481 135261000 135263500 FHL1 HPRT1 = HPRT ENST00000452016.1 3816 135249163 135290734 + seg_481 135261000 135263500 FHL1 HPRT1 = HPRT ENST00000456218.2 3817 135251962 135293518 + seg_481 135261000 135263500 FHL1 HPRT1 = HPRT ENST00000394153.2 3818 135251796 135293518 + seg_481 135261000 135263500 FHL1 HPRT1 = HPRT ENST00000370690.3 3819 135229624 135293518 + seg_481 135261000 135263500 FHL1 HPRT1 = HPRT ENST00000535737.1 3820 135230737 135293518 + seg_481 135261000 135263500 FHL1 HPRT1 = HPRT ENST00000456445.1 3821 135251835 135290729 + seg_481 135261000 135263500 FHL1 HPRT1 = HPRT ENST00000394155.2 3822 135229559 135293518 + seg_481 135261000 135263500 FHL1 HPRT1 = HPRT ENST00000458357.1 3823 135230270 135290084 + seg_481 135261000 135263500 FHL1 HPRT1 = HPRT ENST00000542704.1 3824 135279212 135292265 + seg_482 135278300 135279400 FHL1 HPRT1 = HPRT ENST00000477204.1 3825 135279222 135289710 + seg_482 135278300 135279400 FHL1 HPRT1 = HPRT ENST00000370676.3 3826 135279185 135292226 + seg_482 135278300 135279400 FHL1 HPRT1 = HPRT ENST00000539015.1 3827 135278913 135293518 + seg_482 135278300 135279400 FHL1 HPRT1 = HPRT ENST00000370683.1 3828 135278932 135293518 + seg_482 135278300 135279400 FHL1 HPRT1 = HPRT ENST00000345434.3 3829 135252085 135293518 + seg_482 135278300 135279400 FHL1 HPRT1 = HPRT ENST00000536581.1 3830 135229692 135292637 + seg_482 135278300 135279400 FHL1 HPRT1 = HPRT ENST00000434885.1 3831 135250353 135290734 + seg_482 135278300 135279400 FHL1 HPRT1 = HPRT ENST00000543669.1 3832 135251455 135293518 + seg_482 135278300 135279400 FHL1 HPRT1 = HPRT ENST00000449474.1 3833 135252050 135290042 + seg_482 135278300 135279400 FHL1 HPRT1 = HPRT ENST00000420362.1 3834 135229825 135290725 + seg_482 135278300 135279400 FHL1 HPRT1 = HPRT ENST00000452016.1 3835 135249163 135290734 + seg_482 135278300 135279400 FHL1 HPRT1 = HPRT ENST00000456218.2 3836 135251962 135293518 + seg_482 135278300 135279400 FHL1 HPRT1 = HPRT ENST00000394153.2 3837 135251796 135293518 + seg_482 135278300 135279400 FHL1 HPRT1 = HPRT ENST00000370690.3 3838 135229624 135293518 + seg_482 135278300 135279400 FHL1 HPRT1 = HPRT ENST00000535737.1 3839 135230737 135293518 + seg_482 135278300 135279400 FHL1 HPRT1 = HPRT ENST00000456445.1 3840 135251835 135290729 + seg_482 135278300 135279400 FHL1 HPRT1 = HPRT ENST00000394155.2 3841 135229559 135293518 + seg_482 135278300 135279400 FHL1 HPRT1 = HPRT ENST00000458357.1 3842 135230270 135290084 + seg_482 135278300 135279400 FHL1 HPRT1 = HPRT ENST00000542704.1 3843 135279212 135292265 + seg_483 135280500 135283000 FHL1 HPRT1 = HPRT ENST00000477204.1 3844 135279222 135289710 + seg_483 135280500 135283000 FHL1 HPRT1 = HPRT ENST00000370676.3 3845 135279185 135292226 + seg_483 135280500 135283000 FHL1 HPRT1 = HPRT ENST00000539015.1 3846 135278913 135293518 + seg_483 135280500 135283000 FHL1 HPRT1 = HPRT ENST00000370683.1 3847 135278932 135293518 + seg_483 135280500 135283000 FHL1 HPRT1 = HPRT ENST00000345434.3 3848 135252085 135293518 + seg_483 135280500 135283000 FHL1 HPRT1 = HPRT ENST00000536581.1 3849 135229692 135292637 + seg_483 135280500 135283000 FHL1 HPRT1 = HPRT ENST00000434885.1 3850 135250353 135290734 + seg_483 135280500 135283000 FHL1 HPRT1 = HPRT ENST00000543669.1 3851 135251455 135293518 + seg_483 135280500 135283000 FHL1 HPRT1 = HPRT ENST00000449474.1 3852 135252050 135290042 + seg_483 135280500 135283000 FHL1 HPRT1 = HPRT ENST00000420362.1 3853 135229825 135290725 + seg_483 135280500 135283000 FHL1 HPRT1 = HPRT ENST00000452016.1 3854 135249163 135290734 + seg_483 135280500 135283000 FHL1 HPRT1 = HPRT ENST00000456218.2 3855 135251962 135293518 + seg_483 135280500 135283000 FHL1 HPRT1 = HPRT ENST00000394153.2 3856 135251796 135293518 + seg_483 135280500 135283000 FHL1 HPRT1 = HPRT ENST00000370690.3 3857 135229624 135293518 + seg_483 135280500 135283000 FHL1 HPRT1 = HPRT ENST00000535737.1 3858 135230737 135293518 + seg_483 135280500 135283000 FHL1 HPRT1 = HPRT ENST00000456445.1 3859 135251835 135290729 + seg_483 135280500 135283000 FHL1 HPRT1 = HPRT ENST00000394155.2 3860 135229559 135293518 + seg_483 135280500 135283000 FHL1 HPRT1 = HPRT ENST00000458357.1 3861 135230270 135290084 + seg_483 135280500 135283000 FHL1 HPRT1 = HPRT ENST00000477080.1 3862 135287068 135289820 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000370674.1 3863 135286880 135292113 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000542704.1 3864 135279212 135292265 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000477204.1 3865 135279222 135289710 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000370676.3 3866 135279185 135292226 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000539015.1 3867 135278913 135293518 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000370683.1 3868 135278932 135293518 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000345434.3 3869 135252085 135293518 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000536581.1 3870 135229692 135292637 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000434885.1 3871 135250353 135290734 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000543669.1 3872 135251455 135293518 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000449474.1 3873 135252050 135290042 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000420362.1 3874 135229825 135290725 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000452016.1 3875 135249163 135290734 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000456218.2 3876 135251962 135293518 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000394153.2 3877 135251796 135293518 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000370690.3 3878 135229624 135293518 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000535737.1 3879 135230737 135293518 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000456445.1 3880 135251835 135290729 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000394155.2 3881 135229559 135293518 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000458357.1 3882 135230270 135290084 + seg_484 135286200 135288850 FHL1 HPRT1 = HPRT ENST00000370648.3 3883 135570046 135575939 + seg_485 135570450 135571950 BRS3 HPRT1 = HPRT ENST00000370648.3 3884 135570046 135575939 + seg_486 135573250 135575700 BRS3 HPRT1 = HPRT ENST00000440515.1 3885 135618287 135638655 + seg_488 135623250 135624500 VGLL1 HPRT1 = HPRT ENST00000370634.3 3886 135614311 135638966 + seg_488 135623250 135624500 VGLL1 HPRT1 = HPRT ENST00000456412.1 3887 135618354 135638966 + seg_488 135623250 135624500 VGLL1 HPRT1 = HPRT ENST00000430688.2 3888 135614311 135638965 + seg_488 135623250 135624500 VGLL1 HPRT1 = HPRT ENST00000470358.1 3889 135632601 135638966 + seg_489 135635700 135637100 VGLL1 HPRT1 = HPRT ENST00000440515.1 3890 135618287 135638655 + seg_489 135635700 135637100 VGLL1 HPRT1 = HPRT ENST00000370634.3 3891 135614311 135638966 + seg_489 135635700 135637100 VGLL1 HPRT1 = HPRT ENST00000456412.1 3892 135618354 135638966 + seg_489 135635700 135637100 VGLL1 HPRT1 = HPRT ENST00000430688.2 3893 135614311 135638965 + seg_489 135635700 135637100 VGLL1 HPRT1 = HPRT ENST00000370628.2 3894 135730386 135742549 + seg_492 135736900 135741150 CD40LG HPRT1 = HPRT ENST00000370629.2 3895 135730352 135742549 + seg_492 135736900 135741150 CD40LG HPRT1 = HPRT ENST00000298110.1 3896 136112307 136113833 − seg_493 136111350 136117550 GPR101 F9 ENST00000287538.5 3897 136648301 136653744 + seg_497 136650650 136652500 ZIC3 F9 ENST00000478471.1 3898 136650964 136652154 + seg_497 136650650 136652500 ZIC3 F9 ENST00000370606.3 3899 136648677 136659850 + seg_497 136650650 136652500 ZIC3 F9 ENST00000545711.1 3900 138638452 138638784 − seg_498 138637250 138639450 F9 F9 ENST00000218099.2 3901 138612917 138645617 + seg_498 138637250 138639450 F9 F9 ENST00000394090.2 3902 138612924 138644230 + seg_498 138637250 138639450 F9 F9 ENST00000519895.1 3903 138664456 138790386 − seg_499 138772500 138776000 MCF2 F9 ENST00000520602.1 3904 138663929 138774315 − seg_499 138772500 138776000 MCF2 F9 ENST00000370578.4 3905 138663930 138774284 − seg_499 138772500 138776000 MCF2 F9 ENST00000414978.1 3906 138663930 138790375 − seg_499 138772500 138776000 MCF2 F9 ENST00000485626.1 3907 138884461 139027435 − seg_500 139024650 139025850 ATP11C F9 ENST00000543618.1 3908 148678217 148683886 − seg_503 148673150 148680900 HSFX2 MTM1 ENST00000522155.1 3909 148674868 148676436 − seg_503 148673150 148680900 HSFX2 MTM1 ENST00000524178.1 3910 148674172 148676974 − seg_503 148673150 148680900 HSFX2 MTM1 ENST00000519015.1 3911 148678217 148683886 − seg_503 148673150 148680900 HSFX2 MTM1 ENST00000316916.8 3912 148678216 148713568 − seg_503 148673150 148680900 HSFX2 MTM1 ENST00000502858.2 3913 148679625 148690438 − seg_503 148673150 148680900 HSFX2 MTM1 ENST00000536359.1 3914 148678216 148713487 − seg_503 148673150 148680900 HSFX2 MTM1 ENST00000513505.2 3915 148678216 148713402 − seg_503 148673150 148680900 HSFX2 MTM1 ENST00000543618.1 3916 148678217 148683886 − seg_504 148682650 148684100 HSFX2 MTM1 ENST00000519015.1 3917 148678217 148683886 − seg_504 148682650 148684100 HSFX2 MTM1 ENST00000316916.8 3918 148678216 148713568 − seg_504 148682650 148684100 HSFX2 MTM1 ENST00000502858.2 3919 148679625 148690438 − seg_504 148682650 148684100 HSFX2 MTM1 ENST00000536359.1 3920 148678216 148713487 − seg_504 148682650 148684100 HSFX2 MTM1 ENST00000513505.2 3921 148678216 148713402 − seg_504 148682650 148684100 HSFX2 MTM1 ENST00000502618.1 3922 148681969 148693146 − seg_504 148682650 148684100 HSFX2 MTM1 ENST00000316916.8 3923 148678216 148713568 − seg_505 148711650 148713850 TMEM185A MTM1 ENST00000502900.1 3924 148686838 148713403 − seg_505 148711650 148713850 TMEM185A MTM1 ENST00000536359.1 3925 148678216 148713487 − seg_505 148711650 148713850 TMEM185A MTM1 ENST00000511776.1 3926 148690379 148713365 − seg_505 148711650 148713850 TMEM185A MTM1 ENST00000513505.2 3927 148678216 148713402 − seg_505 148711650 148713850 TMEM185A MTM1 ENST00000507237.1 3928 148685375 148713381 − seg_505 148711650 148713850 TMEM185A MTM1 ENST00000428022.1 3929 148848815 148854483 + seg_509 148852950 148862150 HSFX1 MTM1 ENST00000370416.4 3930 148855726 148858525 + seg_509 148852950 148862150 HSFX1 MTM1 ENST00000524311.1 3931 148850558 148853029 + seg_509 148852950 148862150 HSFX1 MTM1 ENST00000458274.1 3932 149107957 149109050 + seg_510 149108000 149109350 CXorf40B MTM1 ENST00000444489.1 3933 149108374 149185018 + seg_510 149108000 149109350 CXorf40B MTM1 ENST00000449111.1 3934 149106846 149392815 + seg_510 149108000 149109350 CXorf40B MTM1 ENST00000468306.1 3935 149529689 149638367 + seg_511 149530200 149534000 MAMLD1 MTM1 ENST00000432680.2 3936 149531686 149681395 + seg_511 149530200 149534000 MAMLD1 MTM1 ENST00000445612.2 3937 149529836 149680503 + seg_511 149530200 149534000 MAMLD1 MTM1 ENST00000370401.2 3938 149531551 149682448 + seg_511 149530200 149534000 MAMLD1 MTM1 ENST00000426613.2 3939 149613720 149682448 + seg_512 149646300 149649450 MAMLD1 MTM1 ENST00000455522.2 3940 149639280 149680512 + seg_512 149646300 149649450 MAMLD1 MTM1 ENST00000262858.5 3941 149613720 149682448 + seg_512 149646300 149649450 MAMLD1 MTM1 ENST00000432680.2 3942 149531686 149681395 + seg_512 149646300 149649450 MAMLD1 MTM1 ENST00000445612.2 3943 149529836 149680503 + seg_512 149646300 149649450 MAMLD1 MTM1 ENST00000370401.2 3944 149531551 149682448 + seg_512 149646300 149649450 MAMLD1 MTM1 ENST00000426613.2 3945 149613720 149682448 + seg_513 149650500 149652300 MAMLD1 MTM1 ENST00000455522.2 3946 149639280 149680512 + seg_513 149650500 149652300 MAMLD1 MTM1 ENST00000262858.5 3947 149613720 149682448 + seg_513 149650500 149652300 MAMLD1 MTM1 ENST00000432680.2 3948 149531686 149681395 + seg_513 149650500 149652300 MAMLD1 MTM1 ENST00000445612.2 3949 149529836 149680503 + seg_513 149650500 149652300 MAMLD1 MTM1 ENST00000370401.2 3950 149531551 149682448 + seg_513 149650500 149652300 MAMLD1 MTM1 ENST00000426613.2 3951 149613720 149682448 + seg_514 149673500 149676800 MAMLD1 MTM1 ENST00000455522.2 3952 149639280 149680512 + seg_514 149673500 149676800 MAMLD1 MTM1 ENST00000262858.5 3953 149613720 149682448 + seg_514 149673500 149676800 MAMLD1 MTM1 ENST00000432680.2 3954 149531686 149681395 + seg_514 149673500 149676800 MAMLD1 MTM1 ENST00000445612.2 3955 149529836 149680503 + seg_514 149673500 149676800 MAMLD1 MTM1 ENST00000370401.2 3956 149531551 149682448 + seg_514 149673500 149676800 MAMLD1 MTM1 ENST00000464149.1 3957 149677595 149682439 + seg_515 149680400 149683100 MAMLD1 MTM1 ENST00000426613.2 3958 149613720 149682448 + seg_515 149680400 149683100 MAMLD1 MTM1 ENST00000455522.2 3959 149639280 149680512 + seg_515 149680400 149683100 MAMLD1 MTM1 ENST00000262858.5 3960 149613720 149682448 + seg_515 149680400 149683100 MAMLD1 MTM1 ENST00000432680.2 3961 149531686 149681395 + seg_515 149680400 149683100 MAMLD1 MTM1 ENST00000445612.2 3962 149529836 149680503 + seg_515 149680400 149683100 MAMLD1 MTM1 ENST00000370401.2 3963 149531551 149682448 + seg_515 149680400 149683100 MAMLD1 MTM1 ENST00000454196.1 3964 150343664 150346308 − seg_521 150341400 150347800 GPR50 MTM1 ENST00000535473.1 3965 150345056 150348932 + seg_521 150341400 150347800 GPR50 MTM1 ENST00000218316.3 3966 150345125 150349937 + seg_521 150341400 150347800 GPR50 MTM1 ENST00000458074.1 3967 150394701 150396187 − seg_522 150394350 150398150 GPR50 MTM1 ENST00000464219.1 3968 150732201 150844987 + seg_525 150765850 150766900 PASD1 MTM1 ENST00000370357.4 3969 150732094 150845211 + seg_525 150765850 150766900 PASD1 MTM1 ENST00000413236.1 3970 150780136 150839668 + seg_526 150827300 150828750 PRRG3 MTM1 ENST00000464219.1 3971 150732201 150844987 + seg_526 150827300 150828750 PRRG3 MTM1 ENST00000370357.4 3972 150732094 150845211 + seg_526 150827300 150828750 PRRG3 MTM1 ENST00000448324.1 3973 150869023 150873975 + seg_527 150871800 150872900 PRRG3 MTM1 ENST00000370353.3 3974 150866779 150874396 + seg_527 150871800 150872900 PRRG3 MTM1 ENST00000329903.4 3975 150906923 150913776 + seg_528 150911500 150912750 CNGA2 MTM1 ENST00000535156.1 3976 152082986 152142024 + seg_538 152101250 152104800 ZNF185 ABCD1 ENST00000539731.1 3977 152082986 152142024 + seg_538 152101250 152104800 ZNF185 ABCD1 ENST00000447088.1 3978 152088893 152106707 + seg_538 152101250 152104800 ZNF185 ABCD1 ENST00000318504.7 3979 152082986 152142024 + seg_538 152101250 152104800 ZNF185 ABCD1 ENST00000436731.1 3980 152100283 152128354 + seg_538 152101250 152104800 ZNF185 ABCD1 ENST00000370270.1 3981 152086665 152142025 + seg_538 152101250 152104800 ZNF185 ABCD1 ENST00000324823.6 3982 152082986 152142024 + seg_538 152101250 152104800 ZNF185 ABCD1 ENST00000426821.1 3983 152087545 152142017 + seg_538 152101250 152104800 ZNF185 ABCD1 ENST00000447792.1 3984 152089251 152106707 + seg_538 152101250 152104800 ZNF185 ABCD1 ENST00000449285.2 3985 152082986 152142024 + seg_538 152101250 152104800 ZNF185 ABCD1 ENST00000318529.8 3986 152086409 152142024 + seg_538 152101250 152104800 ZNF185 ABCD1 ENST00000535861.1 3987 152082986 152142024 + seg_538 152101250 152104800 ZNF185 ABCD1 ENST00000433245.2 3988 152082986 152128407 + seg_538 152101250 152104800 ZNF185 ABCD1 ENST00000370268.4 3989 152082997 152142015 + seg_538 152101250 152104800 ZNF185 ABCD1 ENST00000456193.1 3990 152387940 152393740 − seg_539 152393100 152402450 PNMA6B ABCD1 ENST00000415779.1 3991 152537078 152543256 + seg_541 152529100 152538150 MAGEA1 ABCD1 ENST00000421080.2 3992 152713128 152760978 − seg_544 152749250 152750350 U82695.9 ABCD1 ENST00000453918.2 3993 152721747 152760940 − seg_544 152749250 152750350 U82695.9 ABCD1 ENST00000370210.1 3994 152727018 152760974 − seg_544 152749250 152750350 U82695.9 ABCD1 ENST00000421080.2 3995 152713128 152760978 − seg_545 152757900 152759300 U82695.9 ABCD1 ENST00000453918.2 3996 152721747 152760940 − seg_545 152757900 152759300 U82695.9 ABCD1 ENST00000370210.1 3997 152727018 152760974 − seg_545 152757900 152759300 U82695.9 ABCD1 ENST00000349466.2 3998 152783134 152846047 + seg_546 152786250 152787250 ATP2B3 ABCD1 ENST00000370186.1 3999 152783134 152848397 + seg_546 152786250 152787250 ATP2B3 ABCD1 ENST00000349466.2 4000 152783134 152846047 + seg_547 152788650 152794100 ATP2B3 ABCD1 ENST00000370186.1 4001 152783134 152848397 + seg_547 152788650 152794100 ATP2B3 ABCD1 ENST00000263519.4 4002 152801580 152848387 + seg_548 152800850 152804450 ATP2B3 ABCD1 ENST00000349466.2 4003 152783134 152846047 + seg_548 152800850 152804450 ATP2B3 ABCD1 ENST00000359149.3 4004 152801580 152846047 + seg_548 152800850 152804450 ATP2B3 ABCD1 ENST00000370181.2 4005 152801580 152848387 + seg_548 152800850 152804450 ATP2B3 ABCD1 ENST00000393842.1 4006 152798392 152835420 + seg_548 152800850 152804450 ATP2B3 ABCD1 ENST00000370186.1 4007 152783134 152848397 + seg_548 152800850 152804450 ATP2B3 ABCD1 ENST00000460549.1 4008 152822404 152826282 + seg_549 152814800 152828650 ATP2B3 ABCD1 ENST00000263519.4 4009 152801580 152848387 + seg_549 152814800 152828650 ATP2B3 ABCD1 ENST00000349466.2 4010 152783134 152846047 + seg_549 152814800 152828650 ATP2B3 ABCD1 ENST00000359149.3 4011 152801580 152846047 + seg_549 152814800 152828650 ATP2B3 ABCD1 ENST00000370181.2 4012 152801580 152848387 + seg_549 152814800 152828650 ATP2B3 ABCD1 ENST00000393842.1 4013 152798392 152835420 + seg_549 152814800 152828650 ATP2B3 ABCD1 ENST00000370186.1 4014 152783134 152848397 + seg_549 152814800 152828650 ATP2B3 ABCD1 ENST00000496610.1 4015 152835106 152846027 + seg_550 152830250 152836300 FAM58A ABCD1 ENST00000263519.4 4016 152801580 152848387 + seg_550 152830250 152836300 FAM58A ABCD1 ENST00000349466.2 4017 152783134 152846047 + seg_550 152830250 152836300 FAM58A ABCD1 ENST00000359149.3 4018 152801580 152846047 + seg_550 152830250 152836300 FAM58A ABCD1 ENST00000370181.2 4019 152801580 152848387 + seg_550 152830250 152836300 FAM58A ABCD1 ENST00000393842.1 4020 152798392 152835420 + seg_550 152830250 152836300 FAM58A ABCD1 ENST00000370186.1 4021 152783134 152848397 + seg_550 152830250 152836300 FAM58A ABCD1 ENST00000496610.1 4022 152835106 152846027 + seg_551 152838450 152845550 FAM58A ABCD1 ENST00000263519.4 4023 152801580 152848387 + seg_551 152838450 152845550 FAM58A ABCD1 ENST00000349466.2 4024 152783134 152846047 + seg_551 152838450 152845550 FAM58A ABCD1 ENST00000359149.3 4025 152801580 152846047 + seg_551 152838450 152845550 FAM58A ABCD1 ENST00000370181.2 4026 152801580 152848387 + seg_551 152838450 152845550 FAM58A ABCD1 ENST00000370186.1 4027 152783134 152848397 + seg_551 152838450 152845550 FAM58A ABCD1 ENST00000406288.2 4028 152871972 152872343 + seg_552 152868250 152873400 FAM58A ABCD1 ENST00000434763.1 4029 152869952 152870803 − seg_552 152868250 152873400 FAM58A ABCD1 ENST00000480496.1 4030 152931688 152931971 + seg_556 152929350 152932250 PNCK ABCD1 ENST00000468491.1 4031 153072782 153095125 − seg_557 153075300 153076350 PDZD4 L1CAM ENST00000480418.1 4032 153071037 153096020 − seg_557 153075300 153076350 PDZD4 L1CAM ENST00000480650.1 4033 153073438 153095792 − seg_557 153075300 153076350 PDZD4 L1CAM ENST00000164640.4 4034 153067621 153095945 − seg_557 153075300 153076350 PDZD4 L1CAM ENST00000544474.1 4035 153068742 153095813 − seg_557 153075300 153076350 PDZD4 L1CAM ENST00000483693.1 4036 153071000 153095598 − seg_557 153075300 153076350 PDZD4 L1CAM ENST00000393758.2 4037 153067623 153095351 − seg_557 153075300 153076350 PDZD4 L1CAM ENST00000475140.1 4038 153070548 153095311 − seg_557 153075300 153076350 PDZD4 L1CAM ENST00000468491.1 4039 153072782 153095125 − seg_558 153078100 153079800 PDZD4 L1CAM ENST00000480418.1 4040 153071037 153096020 − seg_558 153078100 153079800 PDZD4 L1CAM ENST00000480650.1 4041 153073438 153095792 − seg_558 153078100 153079800 PDZD4 L1CAM ENST00000164640.4 4042 153067621 153095945 − seg_558 153078100 153079800 PDZD4 L1CAM ENST00000544474.1 4043 153068742 153095813 − seg_558 153078100 153079800 PDZD4 L1CAM ENST00000483693.1 4044 153071000 153095598 − seg_558 153078100 153079800 PDZD4 L1CAM ENST00000393758.2 4045 153067623 153095351 − seg_558 153078100 153079800 PDZD4 L1CAM ENST00000475140.1 4046 153070548 153095311 − seg_558 153078100 153079800 PDZD4 L1CAM ENST00000468491.1 4047 153072782 153095125 − seg_559 153083600 153087450 PDZD4 L1CAM ENST00000480418.1 4048 153071037 153096020 − seg_559 153083600 153087450 PDZD4 L1CAM ENST00000480650.1 4049 153073438 153095792 − seg_559 153083600 153087450 PDZD4 L1CAM ENST00000164640.4 4050 153067621 153095945 − seg_559 153083600 153087450 PDZD4 L1CAM ENST00000544474.1 4051 153068742 153095813 − seg_559 153083600 153087450 PDZD4 L1CAM ENST00000483693.1 4052 153071000 153095598 − seg_559 153083600 153087450 PDZD4 L1CAM ENST00000393758.2 4053 153067623 153095351 − seg_559 153083600 153087450 PDZD4 L1CAM ENST00000475140.1 4054 153070548 153095311 − seg_559 153083600 153087450 PDZD4 L1CAM ENST00000468491.1 4055 153072782 153095125 − seg_560 153088800 153098300 PDZD4 L1CAM ENST00000480418.1 4056 153071037 153096020 − seg_560 153088800 153098300 PDZD4 L1CAM ENST00000480650.1 4057 153073438 153095792 − seg_560 153088800 153098300 PDZD4 L1CAM ENST00000164640.4 4058 153067621 153095945 − seg_560 153088800 153098300 PDZD4 L1CAM ENST00000544474.1 4059 153068742 153095813 − seg_560 153088800 153098300 PDZD4 L1CAM ENST00000483693.1 4060 153071000 153095598 − seg_560 153088800 153098300 PDZD4 L1CAM ENST00000393758.2 4061 153067623 153095351 − seg_560 153088800 153098300 PDZD4 L1CAM ENST00000475140.1 4062 153070548 153095311 − seg_560 153088800 153098300 PDZD4 L1CAM ENST00000455590.1 4063 153132227 153133832 − seg_563 153127450 153132350 L1CAM L1CAM ENST00000370058.3 4064 153127888 153129933 − seg_563 153127450 153132350 L1CAM L1CAM ENST00000491983.1 4065 153128247 153129424 − seg_563 153127450 153132350 L1CAM L1CAM ENST00000474853.1 4066 153130419 153131370 − seg_563 153127450 153132350 L1CAM L1CAM ENST00000370055.1 4067 153127408 153151608 − seg_563 153127450 153132350 L1CAM L1CAM ENST00000370057.3 4068 153126973 153141399 − seg_563 153127450 153132350 L1CAM L1CAM ENST00000361699.4 4069 153128003 153141302 − seg_563 153127450 153132350 L1CAM L1CAM ENST00000540065.1 4070 153126995 153151569 − seg_563 153127450 153132350 L1CAM L1CAM ENST00000361981.3 4071 153126973 153141399 − seg_563 153127450 153132350 L1CAM L1CAM ENST00000538883.1 4072 153126973 153141399 − seg_563 153127450 153132350 L1CAM L1CAM ENST00000370060.1 4073 153126969 153151600 − seg_563 153127450 153132350 L1CAM L1CAM ENST00000543994.1 4074 153126973 153141399 − seg_563 153127450 153132350 L1CAM L1CAM ENST00000357566.1 4075 153146127 153154425 + seg_564 153150300 153151550 LCA10 L1CAM ENST00000484587.1 4076 153149319 153151615 − seg_564 153150300 153151550 LCA10 L1CAM ENST00000452593.1 4077 153146127 153154444 + seg_564 153150300 153151550 LCA10 L1CAM ENST00000370055.1 4078 153127408 153151608 − seg_564 153150300 153151550 LCA10 L1CAM ENST00000540065.1 4079 153126995 153151569 − seg_564 153150300 153151550 LCA10 L1CAM ENST00000460553.1 4080 153138404 153151596 − seg_564 153150300 153151550 LCA10 L1CAM ENST00000464967.1 4081 153137676 153174677 − seg_564 153150300 153151550 LCA10 L1CAM ENST00000420165.1 4082 153137722 153151627 − seg_564 153150300 153151550 LCA10 L1CAM ENST00000370060.1 4083 153126969 153151600 − seg_564 153150300 153151550 LCA10 L1CAM ENST00000464967.1 4084 153137676 153174677 − seg_565 153157700 153161200 LCA10 AVPR2 ENST00000464967.1 4085 153137676 153174677 − seg_566 153162600 153164350 AVPR2 AVPR2 ENST00000369941.4 4086 153424682 153445634 − seg_567 153438400 153439700 TEX28P2 OPN1MW ENST00000430054.1 4087 153455547 153461628 + seg_568 153455250 153457100 OPN1MW OPN1MW ENST00000468495.1 4088 153448157 153459002 + seg_568 153455250 153457100 OPN1MW OPN1MW ENST00000369935.5 4089 153448107 153461633 + seg_568 153455250 153457100 OPN1MW OPN1MW ENST00000463884.1 4090 153555722 153558038 + seg_569 153547800 153558950 TKTL1 EMD ENST00000482044.1 4091 153555530 153556245 + seg_569 153547800 153558950 TKTL1 EMD ENST00000217905.7 4092 153524152 153558076 + seg_569 153547800 153558950 TKTL1 EMD ENST00000441970.3 4093 153524027 153558713 + seg_569 153547800 153558950 TKTL1 EMD ENST00000369915.3 4094 153524024 153558700 + seg_569 153547800 153558950 TKTL1 EMD ENST00000465168.1 4095 153548651 153553731 + seg_569 153547800 153558950 TKTL1 EMD ENST00000369912.2 4096 153533409 153558700 + seg_569 153547800 153558950 TKTL1 EMD ENST00000442033.1 4097 153882820 153883599 + seg_572 153883050 153884900 CTAG2 DKC1 ENST00000437536.1 4098 153887064 153887956 − seg_573 153886450 153887600 CTAG2 DKC1 ENST00000496390.1 4099 153903529 153979858 − seg_574 153979700 153981100 GAB3 DKC1 ENST00000393517.4 4100 154065133 154255215 − seg_575 154129300 154130500 F8A1 F8 ENST00000360256.4 4101 154064070 154251028 − seg_575 154129300 154130500 F8A1 F8 ENST00000423959.1 4102 154212976 154255215 − seg_576 154214850 154216450 F8 F8 ENST00000393517.4 4103 154065133 154255215 − seg_576 154214850 154216450 F8 F8 ENST00000360256.4 4104 154064070 154251028 − seg_576 154214850 154216450 F8 F8 ENST00000286428.5 4105 154444643 154468098 + seg_577 154443300 154445000 VBP1 F8 ENST00000535916.1 4106 154425284 154467325 + seg_577 154443300 154445000 VBP1 F8 ENST00000488344.1 4107 155111023 155171608 + seg_578 155118300 155119400 VAMP7 F8 ENST00000286448.6 4108 155110956 155173433 + seg_578 155118300 155119400 VAMP7 F8 ENST00000460621.1 4109 155111041 155171653 + seg_578 155118300 155119400 VAMP7 F8 ENST00000479687.1 4110 155111021 155171573 + seg_578 155118300 155119400 VAMP7 F8 ENST00000463317.1 4111 155111035 155169454 + seg_578 155118300 155119400 VAMP7 F8 ENST00000262640.6 4112 155111038 155173433 + seg_578 155118300 155119400 VAMP7 F8

TABLE XVII paRNAs associated with SUZ12 STRONG sites in K562 cells Transcript ID SIN Start Stop Strand Suz12 ID Suz12 Start Suz12 End Closest gene disease gene ENST00000431238.1 4113 170410 172712 + seg_1 169650 171500 PLCXD1 OA1 = GPR143 ENST00000334060.3 4114 585079 620146 + seg_11 605350 606900 SHOX OA1 = GPR143 ENST00000381578.1 4115 585079 607558 + seg_11 605350 606900 SHOX OA1 = GPR143 ENST00000381575.1 4116 591542 620146 + seg_11 605350 606900 SHOX OA1 = GPR143 ENST00000334060.3 4117 585079 620146 + seg_12 610200 612700 SHOX OA1 = GPR143 ENST00000381575.1 4118 591542 620146 + seg_12 610200 612700 SHOX OA1 = GPR143 ENST00000381566.1 4119 1317790 1331527 − seg_22 1329250 1330400 CRLF2 OA1 = GPR143 ENST00000381567.3 4120 1314890 1331527 − seg_22 1329250 1330400 CRLF2 OA1 = GPR143 ENST00000467626.1 4121 1314894 1331616 − seg_22 1329250 1330400 CRLF2 OA1 = GPR143 ENST00000400841.2 4122 1314894 1331530 − seg_22 1329250 1330400 CRLF2 OA1 = GPR143 ENST00000486791.1 4123 1387738 1428827 + seg_23 1392750 1394000 CSF2RA OA1 = GPR143 ENST00000381524.3 4124 1387701 1429274 + seg_23 1392750 1394000 CSF2RA OA1 = GPR143 ENST00000412290.1 4125 1387711 1413288 + seg_23 1392750 1394000 CSF2RA OA1 = GPR143 ENST00000501036.2 4126 1387693 1428828 + seg_23 1392750 1394000 CSF2RA OA1 = GPR143 ENST00000381529.3 4127 1387693 1428815 + seg_23 1392750 1394000 CSF2RA OA1 = GPR143 ENST00000361536.3 4128 1387693 1428828 + seg_23 1392750 1394000 CSF2RA OA1 = GPR143 ENST00000355432.3 4129 1387738 1428827 + seg_23 1392750 1394000 CSF2RA OA1 = GPR143 ENST00000355805.2 4130 1387738 1428827 + seg_23 1392750 1394000 CSF2RA OA1 = GPR143 ENST00000419094.1 4131 1387723 1409320 + seg_23 1392750 1394000 CSF2RA OA1 = GPR143 ENST00000493312.1 4132 1387707 1419436 + seg_23 1392750 1394000 CSF2RA OA1 = GPR143 ENST00000381507.4 4133 1387693 1428828 + seg_23 1392750 1394000 CSF2RA OA1 = GPR143 ENST00000381509.3 4134 1387725 1424834 + seg_23 1392750 1394000 CSF2RA OA1 = GPR143 ENST00000494969.1 4135 1387725 1428815 + seg_23 1392750 1394000 CSF2RA OA1 = GPR143 ENST00000432318.2 4136 1387693 1428828 + seg_23 1392750 1394000 CSF2RA OA1 = GPR143 ENST00000481245.1 4137 1387728 1401113 + seg_23 1392750 1394000 CSF2RA OA1 = GPR143 ENST00000486791.1 4138 1387738 1428827 + seg_24 1397900 1399150 CSF2RA OA1 = GPR143 ENST00000381524.3 4139 1387701 1429274 + seg_24 1397900 1399150 CSF2RA OA1 = GPR143 ENST00000412290.1 4140 1387711 1413288 + seg_24 1397900 1399150 CSF2RA OA1 = GPR143 ENST00000501036.2 4141 1387693 1428828 + seg_24 1397900 1399150 CSF2RA OA1 = GPR143 ENST00000381529.3 4142 1387693 1428815 + seg_24 1397900 1399150 CSF2RA OA1 = GPR143 ENST00000361536.3 4143 1387693 1428828 + seg_24 1397900 1399150 CSF2RA OA1 = GPR143 ENST00000355432.3 4144 1387738 1428827 + seg_24 1397900 1399150 CSF2RA OA1 = GPR143 ENST00000355805.2 4145 1387738 1428827 + seg_24 1397900 1399150 CSF2RA OA1 = GPR143 ENST00000419094.1 4146 1387723 1409320 + seg_24 1397900 1399150 CSF2RA OA1 = GPR143 ENST00000493312.1 4147 1387707 1419436 + seg_24 1397900 1399150 CSF2RA OA1 = GPR143 ENST00000381507.4 4148 1387693 1428828 + seg_24 1397900 1399150 CSF2RA OA1 = GPR143 ENST00000381509.3 4149 1387725 1424834 + seg_24 1397900 1399150 CSF2RA OA1 = GPR143 ENST00000494969.1 4150 1387725 1428815 + seg_24 1397900 1399150 CSF2RA OA1 = GPR143 ENST00000432318.2 4151 1387693 1428828 + seg_24 1397900 1399150 CSF2RA OA1 = GPR143 ENST00000481245.1 4152 1387728 1401113 + seg_24 1397900 1399150 CSF2RA OA1 = GPR143 ENST00000381469.2 4153 1460659 1501358 + seg_26 1464250 1469050 IL3RA OA1 = GPR143 ENST00000331035.4 4154 1455509 1501578 + seg_26 1464250 1469050 IL3RA OA1 = GPR143 ENST00000432757.1 4155 1455689 1475224 + seg_26 1464250 1469050 IL3RA OA1 = GPR143 ENST00000474865.1 4156 1560485 1571765 − seg_27 1571500 1573550 ASMTL OA1 = GPR143 ENST00000534940.1 4157 1522032 1572655 − seg_27 1571500 1573550 ASMTL OA1 = GPR143 ENST00000416733.2 4158 1522032 1571768 − seg_27 1571500 1573550 ASMTL OA1 = GPR143 ENST00000381333.4 4159 1522034 1571822 − seg_27 1571500 1573550 ASMTL OA1 = GPR143 ENST00000381317.3 4160 1522034 1571766 − seg_27 1571500 1573550 ASMTL OA1 = GPR143 ENST00000381297.4 4161 1581465 1656000 − seg_28 1589950 1591400 P2RY8 OA1 = GPR143 ENST00000460672.1 4162 1585330 1613246 − seg_28 1589950 1591400 P2RY8 OA1 = GPR143 ENST00000381229.4 4163 1734057 1761920 + seg_30 1736000 1737000 ASMT OA1 = GPR143 ENST00000381233.3 4164 1734068 1761974 + seg_30 1736000 1737000 ASMT OA1 = GPR143 ENST00000381241.3 4165 1733894 1761974 + seg_30 1736000 1737000 ASMT OA1 = GPR143 ENST00000381229.4 4166 1734057 1761920 + seg_31 1750100 1751300 ASMT OA1 = GPR143 ENST00000381233.3 4167 1734068 1761974 + seg_31 1750100 1751300 ASMT OA1 = GPR143 ENST00000381241.3 4168 1733894 1761974 + seg_31 1750100 1751300 ASMT OA1 = GPR143 ENST00000509780.1 4169 1746639 1755356 + seg_31 1750100 1751300 ASMT OA1 = GPR143 ENST00000334651.5 4170 2137557 2419019 − seg_33 2143700 2144900 DHRSX OA1 = GPR143 ENST00000381180.3 4171 2609402 2610291 + seg_38 2608500 2610050 CD99 OA1 = GPR143 ENST00000381187.3 4172 2609317 2659142 + seg_38 2608500 2610050 CD99 OA1 = GPR143 ENST00000381184.1 4173 2609321 2651708 + seg_38 2608500 2610050 CD99 OA1 = GPR143 ENST00000381192.3 4174 2609220 2659350 + seg_38 2608500 2610050 CD99 OA1 = GPR143 ENST00000449611.1 4175 2609541 2644414 + seg_38 2608500 2610050 CD99 OA1 = GPR143 ENST00000426774.1 4176 2670093 2734539 + seg_40 2685100 2686250 XG OA1 = GPR143 ENST00000533923.2 4177 2670231 2732581 + seg_40 2685100 2686250 XG OA1 = GPR143 ENST00000381174.5 4178 2670091 2733968 + seg_40 2685100 2686250 XG OA1 = GPR143 ENST00000503018.1 4179 2670337 2693037 + seg_40 2685100 2686250 XG OA1 = GPR143 ENST00000419513.2 4180 2670093 2732589 + seg_40 2685100 2686250 XG OA1 = GPR143 ENST00000509484.2 4181 2670186 2729477 + seg_40 2685100 2686250 XG OA1 = GPR143 ENST00000519244.1 4182 2712576 2726418 + seg_41 2710300 2713050 GYG2 OA1 = GPR143 ENST00000426774.1 4183 2670093 2734539 + seg_41 2710300 2713050 GYG2 OA1 = GPR143 ENST00000533923.2 4184 2670231 2732581 + seg_41 2710300 2713050 GYG2 OA1 = GPR143 ENST00000381174.5 4185 2670091 2733968 + seg_41 2710300 2713050 GYG2 OA1 = GPR143 ENST00000419513.2 4186 2670093 2732589 + seg_41 2710300 2713050 GYG2 OA1 = GPR143 ENST00000509484.2 4187 2670186 2729477 + seg_41 2710300 2713050 GYG2 OA1 = GPR143 ENST00000519244.1 4188 2712576 2726418 + seg_42 2718100 2719250 GYG2 OA1 = GPR143 ENST00000426774.1 4189 2670093 2734539 + seg_42 2718100 2719250 GYG2 OA1 = GPR143 ENST00000533923.2 4190 2670231 2732581 + seg_42 2718100 2719250 GYG2 OA1 = GPR143 ENST00000381174.5 4191 2670091 2733968 + seg_42 2718100 2719250 GYG2 OA1 = GPR143 ENST00000419513.2 4192 2670093 2732589 + seg_42 2718100 2719250 GYG2 OA1 = GPR143 ENST00000509484.2 4193 2670186 2729477 + seg_42 2718100 2719250 GYG2 OA1 = GPR143 ENST00000519244.1 4194 2712576 2726418 + seg_43 2722300 2723400 GYG2 OA1 = GPR143 ENST00000426774.1 4195 2670093 2734539 + seg_43 2722300 2723400 GYG2 OA1 = GPR143 ENST00000533923.2 4196 2670231 2732581 + seg_43 2722300 2723400 GYG2 OA1 = GPR143 ENST00000381174.5 4197 2670091 2733968 + seg_43 2722300 2723400 GYG2 OA1 = GPR143 ENST00000419513.2 4198 2670093 2732589 + seg_43 2722300 2723400 GYG2 OA1 = GPR143 ENST00000509484.2 4199 2670186 2729477 + seg_43 2722300 2723400 GYG2 OA1 = GPR143 ENST00000537104.1 4200 2976652 3030747 + seg_44 2985150 2986300 ARSF OA1 = GPR143 ENST00000359361.2 4201 2984874 3030747 + seg_44 2985150 2986300 ARSF OA1 = GPR143 ENST00000381127.1 4202 2959512 3030767 + seg_44 2985150 2986300 ARSF OA1 = GPR143 ENST00000217939.5 4203 3226611 3264684 − seg_45 3262450 3264450 MXRA5 OA1 = GPR143 ENST00000381114.1 4204 3226606 3264682 − seg_45 3262450 3264450 MXRA5 OA1 = GPR143 ENST00000381106.3 4205 3820866 3838787 − seg_48 3836600 3837850 RP11- OA1 = GPR143 706O15.1 ENST00000453306.1 4206 8432871 8434550 + seg_50 8433250 8434450 VCX3B OA1 = GPR143 ENST00000381029.4 4207 8433467 8434510 + seg_50 8433250 8434450 VCX3B OA1 = GPR143 ENST00000440654.2 4208 8433376 8434522 + seg_50 8433250 8434450 VCX3B OA1 = GPR143 ENST00000381032.1 4209 8432871 8434547 + seg_50 8433250 8434450 VCX3B OA1 = GPR143 ENST00000444481.1 4210 8432871 8434424 + seg_50 8433250 8434450 VCX3B OA1 = GPR143 ENST00000432442.1 4211 9217960 9243246 + seg_51 9230300 9231800 FAM9B OA1 = GPR143 ENST00000416620.1 4212 9370791 9382606 + seg_56 9372050 9382550 TBL1X OA1 = GPR143 ENST00000441088.1 4213 9431360 9622328 + seg_57 9433800 9434800 TBL1X OA1 = GPR143 ENST00000217964.7 4214 9433048 9687778 + seg_57 9433800 9434800 TBL1X OA1 = GPR143 ENST00000380961.1 4215 9431369 9686902 + seg_57 9433800 9434800 TBL1X OA1 = GPR143 ENST00000407597.2 4216 9431335 9687780 + seg_57 9433800 9434800 TBL1X OA1 = GPR143 ENST00000424279.1 4217 9431335 9687780 + seg_57 9433800 9434800 TBL1X OA1 = GPR143 ENST00000415293.1 4218 9431371 9656077 + seg_57 9433800 9434800 TBL1X OA1 = GPR143 ENST00000536365.1 4219 9431352 9684302 + seg_57 9433800 9434800 TBL1X OA1 = GPR143 ENST00000422314.1 4220 9433334 9652158 + seg_57 9433800 9434800 TBL1X OA1 = GPR143 ENST00000441088.1 4221 9431360 9622328 + seg_58 9465900 9467000 TBL1X OA1 = GPR143 ENST00000217964.7 4222 9433048 9687778 + seg_58 9465900 9467000 TBL1X OA1 = GPR143 ENST00000380961.1 4223 9431369 9686902 + seg_58 9465900 9467000 TBL1X OA1 = GPR143 ENST00000407597.2 4224 9431335 9687780 + seg_58 9465900 9467000 TBL1X OA1 = GPR143 ENST00000424279.1 4225 9431335 9687780 + seg_58 9465900 9467000 TBL1X OA1 = GPR143 ENST00000415293.1 4226 9431371 9656077 + seg_58 9465900 9467000 TBL1X OA1 = GPR143 ENST00000536365.1 4227 9431352 9684302 + seg_58 9465900 9467000 TBL1X OA1 = GPR143 ENST00000422314.1 4228 9433334 9652158 + seg_58 9465900 9467000 TBL1X OA1 = GPR143 ENST00000447366.1 4229 9707592 9754337 − seg_59 9732550 9734250 GPR143 OA1 = GPR143 ENST00000431126.1 4230 9711605 9734229 − seg_59 9732550 9734250 GPR143 OA1 = GPR143 ENST00000467482.1 4231 9693386 9734004 − seg_59 9732550 9734250 GPR143 OA1 = GPR143 ENST00000380929.2 4232 9693454 9734005 − seg_59 9732550 9734250 GPR143 OA1 = GPR143 ENST00000447366.1 4233 9707592 9754337 − seg_60 9754100 9755600 SHROOM2 OA1 = GPR143 ENST00000380913.3 4234 9754496 9917483 + seg_60 9754100 9755600 SHROOM2 OA1 = GPR143 ENST00000380913.3 4235 9754496 9917483 + seg_61 9815800 9817450 SHROOM2 OA1 = GPR143 ENST00000380913.3 4236 9754496 9917483 + seg_62 9861700 9864800 SHROOM2 OA1 = GPR143 ENST00000445307.2 4237 9935392 9936134 + seg_63 9935000 9936000 AC002365.1 OA1 = GPR143 ENST00000543293.1 4238 10031499 10086141 + seg_66 10066550 10068450 WWC3 OA1 = GPR143 ENST00000398613.4 4239 10035291 10109658 + seg_66 10066550 10068450 WWC3 OA1 = GPR143 ENST00000380861.4 4240 9983602 10112518 + seg_66 10066550 10068450 WWC3 OA1 = GPR143 ENST00000454666.1 4241 10031499 10109658 + seg_66 10066550 10068450 WWC3 OA1 = GPR143 ENST00000423614.1 4242 10534995 10588625 − seg_67 10587800 10589000 MID1 OA1 = GPR143 ENST00000453318.2 4243 10413350 10645779 − seg_67 10587800 10589000 MID1 OA1 = GPR143 ENST00000380782.1 4244 10413596 10588459 − seg_67 10587800 10589000 MID1 OA1 = GPR143 ENST00000380787.1 4245 10413596 10851773 − seg_67 10587800 10589000 MID1 OA1 = GPR143 ENST00000380785.1 4246 10413596 10851762 − seg_67 10587800 10589000 MID1 OA1 = GPR143 ENST00000317552.4 4247 10413350 10588674 − seg_67 10587800 10589000 MID1 OA1 = GPR143 ENST00000413894.1 4248 10423115 10645727 − seg_67 10587800 10589000 MID1 OA1 = GPR143 ENST00000433747.1 4249 10981960 11129258 − seg_68 10995600 10996600 HCCS OA1 = GPR143 ENST00000433747.1 4250 10981960 11129258 − seg_69 11002150 11003400 HCCS OA1 = GPR143 ENST00000380712.3 4251 11311533 11318881 + seg_70 11317250 11318400 AMELX OA1 = GPR143 ENST00000380714.3 4252 11311533 11318881 + seg_70 11317250 11318400 AMELX OA1 = GPR143 ENST00000348912.4 4253 11311533 11318873 + seg_70 11317250 11318400 AMELX OA1 = GPR143 ENST00000380736.1 4254 11155663 11445893 − seg_70 11317250 11318400 AMELX OA1 = GPR143 ENST00000413512.3 4255 11162134 11369656 − seg_70 11317250 11318400 AMELX OA1 = GPR143 ENST00000380732.3 4256 11166770 11682948 − seg_70 11317250 11318400 AMELX OA1 = GPR143 ENST00000489330.1 4257 11155667 11683203 − seg_70 11317250 11318400 AMELX OA1 = GPR143 ENST00000337414.4 4258 11155664 11683821 − seg_70 11317250 11318400 AMELX OA1 = GPR143 ENST00000495242.1 4259 11155664 11683821 − seg_70 11317250 11318400 AMELX OA1 = GPR143 ENST00000380718.1 4260 11161517 11683821 − seg_70 11317250 11318400 AMELX OA1 = GPR143 ENST00000380732.3 4261 11166770 11682948 − seg_71 11671200 11672400 ARHGAP6 OA1 = GPR143 ENST00000489330.1 4262 11155667 11683203 − seg_71 11671200 11672400 ARHGAP6 OA1 = GPR143 ENST00000337414.4 4263 11155664 11683821 − seg_71 11671200 11672400 ARHGAP6 OA1 = GPR143 ENST00000495242.1 4264 11155664 11683821 − seg_71 11671200 11672400 ARHGAP6 OA1 = GPR143 ENST00000380718.1 4265 11161517 11683821 − seg_71 11671200 11672400 ARHGAP6 OA1 = GPR143 ENST00000380732.3 4266 11166770 11682948 − seg_72 11681150 11684100 ARHGAP6 OA1 = GPR143 ENST00000489330.1 4267 11155667 11683203 − seg_72 11681150 11684100 ARHGAP6 OA1 = GPR143 ENST00000337414.4 4268 11155664 11683821 − seg_72 11681150 11684100 ARHGAP6 OA1 = GPR143 ENST00000495242.1 4269 11155664 11683821 − seg_72 11681150 11684100 ARHGAP6 OA1 = GPR143 ENST00000380718.1 4270 11161517 11683821 − seg_72 11681150 11684100 ARHGAP6 OA1 = GPR143 ENST00000473806.1 4271 11778257 11779701 + seg_74 11778800 11779850 MSL3 SEDL = TRAPPC2 ENST00000478462.1 4272 11777760 11779173 + seg_74 11778800 11779850 MSL3 SEDL = TRAPPC2 ENST00000380693.3 4273 11777671 11793870 + seg_74 11778800 11779850 MSL3 SEDL = TRAPPC2 ENST00000337339.2 4274 11776356 11786096 + seg_74 11778800 11779850 MSL3 SEDL = TRAPPC2 ENST00000312196.4 4275 11776278 11793870 + seg_74 11778800 11779850 MSL3 SEDL = TRAPPC2 ENST00000398527.2 4276 11776728 11793574 + seg_74 11778800 11779850 MSL3 SEDL = TRAPPC2 ENST00000468149.1 4277 11776372 11793350 + seg_74 11778800 11779850 MSL3 SEDL = TRAPPC2 ENST00000494268.1 4278 11778341 11782370 + seg_74 11778800 11779850 MSL3 SEDL = TRAPPC2 ENST00000421368.2 4279 11776705 11781076 + seg_74 11778800 11779850 MSL3 SEDL = TRAPPC2 ENST00000487782.1 4280 11778594 11786803 + seg_74 11778800 11779850 MSL3 SEDL = TRAPPC2 ENST00000476743.1 4281 11776701 11780338 + seg_74 11778800 11779850 MSL3 SEDL = TRAPPC2 ENST00000483645.1 4282 11778305 11781043 + seg_74 11778800 11779850 MSL3 SEDL = TRAPPC2 ENST00000361672.2 4283 11776410 11793350 + seg_74 11778800 11779850 MSL3 SEDL = TRAPPC2 ENST00000380692.2 4284 11777747 11783765 + seg_74 11778800 11779850 MSL3 SEDL = TRAPPC2 ENST00000482871.1 4285 11778162 11781026 + seg_74 11778800 11779850 MSL3 SEDL = TRAPPC2 ENST00000304087.6 4286 12516791 12742633 + seg_75 12601150 12602900 PRPS2 SEDL = TRAPPC2 ENST00000380682.1 4287 12156585 12742642 + seg_75 12601150 12602900 PRPS2 SEDL = TRAPPC2 ENST00000429478.2 4288 12516714 12736911 + seg_75 12601150 12602900 PRPS2 SEDL = TRAPPC2 ENST00000489404.1 4289 12809607 12828488 + seg_78 12812950 12814100 PRPS2 SEDL = TRAPPC2 ENST00000398491.2 4290 12809525 12841205 + seg_78 12812950 12814100 PRPS2 SEDL = TRAPPC2 ENST00000380668.5 4291 12809489 12842341 + seg_78 12812950 12814100 PRPS2 SEDL = TRAPPC2 ENST00000380663.3 4292 12809474 12828238 + seg_78 12812950 12814100 PRPS2 SEDL = TRAPPC2 ENST00000380659.3 4293 12885202 12908499 + seg_80 12897150 12898350 TLR7 SEDL = TRAPPC2 ENST00000451311.2 4294 12993227 12995346 + seg_81 12993000 12994200 TMSB4X SEDL = TRAPPC2 ENST00000380633.1 4295 12993777 12995200 + seg_81 12993000 12994200 TMSB4X SEDL = TRAPPC2 ENST00000380635.1 4296 12993363 12995346 + seg_81 12993000 12994200 TMSB4X SEDL = TRAPPC2 ENST00000380636.1 4297 12993229 12995345 + seg_81 12993000 12994200 TMSB4X SEDL = TRAPPC2 ENST00000380602.3 4298 13587741 13651694 + seg_85 13587150 13589000 EGFL6 SEDL = TRAPPC2 ENST00000361306.1 4299 13587724 13651693 + seg_85 13587150 13589000 EGFL6 SEDL = TRAPPC2 ENST00000493677.1 4300 13790818 13835188 − seg_86 13804100 13806050 GPM6B OFD1 ENST00000355135.2 4301 13792073 13835188 − seg_86 13804100 13806050 GPM6B OFD1 ENST00000316715.4 4302 13789150 13835461 − seg_86 13804100 13806050 GPM6B OFD1 ENST00000356942.5 4303 13792073 13835465 − seg_86 13804100 13806050 GPM6B OFD1 ENST00000475307.1 4304 13801568 13835442 − seg_86 13804100 13806050 GPM6B OFD1 ENST00000493085.1 4305 13797972 13907176 − seg_86 13804100 13806050 GPM6B OFD1 ENST00000398361.3 4306 13792456 13956534 − seg_86 13804100 13806050 GPM6B OFD1 ENST00000468080.1 4307 13798027 13907731 − seg_86 13804100 13806050 GPM6B OFD1 ENST00000454189.2 4308 13789575 13956757 − seg_86 13804100 13806050 GPM6B OFD1 ENST00000493677.1 4309 13790818 13835188 − seg_87 13834050 13835850 GPM6B OFD1 ENST00000355135.2 4310 13792073 13835188 − seg_87 13834050 13835850 GPM6B OFD1 ENST00000316715.4 4311 13789150 13835461 − seg_87 13834050 13835850 GPM6B OFD1 ENST00000356942.5 4312 13792073 13835465 − seg_87 13834050 13835850 GPM6B OFD1 ENST00000475307.1 4313 13801568 13835442 − seg_87 13834050 13835850 GPM6B OFD1 ENST00000493085.1 4314 13797972 13907176 − seg_87 13834050 13835850 GPM6B OFD1 ENST00000398361.3 4315 13792456 13956534 − seg_87 13834050 13835850 GPM6B OFD1 ENST00000468080.1 4316 13798027 13907731 − seg_87 13834050 13835850 GPM6B OFD1 ENST00000454189.2 4317 13789575 13956757 − seg_87 13834050 13835850 GPM6B OFD1 ENST00000493085.1 4318 13797972 13907176 − seg_88 13898100 13899500 GPM6B OFD1 ENST00000398361.3 4319 13792456 13956534 − seg_88 13898100 13899500 GPM6B OFD1 ENST00000468080.1 4320 13798027 13907731 − seg_88 13898100 13899500 GPM6B OFD1 ENST00000454189.2 4321 13789575 13956757 − seg_88 13898100 13899500 GPM6B OFD1 ENST00000398361.3 4322 13792456 13956534 − seg_89 13955300 13956550 GPM6B OFD1 ENST00000454189.2 4323 13789575 13956757 − seg_89 13955300 13956550 GPM6B OFD1 ENST00000415367.1 4324 14549268 14625369 + seg_91 14596250 14597350 GLRA2 PIGA ENST00000443437.2 4325 14547420 14749931 + seg_91 14596250 14597350 GLRA2 PIGA ENST00000355020.4 4326 14547894 14748692 + seg_91 14596250 14597350 GLRA2 PIGA ENST00000218075.4 4327 14547650 14749934 + seg_91 14596250 14597350 GLRA2 PIGA ENST00000444401.1 4328 15135563 15135890 − seg_93 15134850 15135950 ASB9 PIGA ENST00000380470.3 4329 15299819 15333746 − seg_94 15330250 15331650 ASB11 PIGA ENST00000537676.1 4330 15298053 15332681 − seg_94 15330250 15331650 ASB11 PIGA ENST00000344384.4 4331 15300441 15332681 − seg_94 15330250 15331650 ASB11 PIGA ENST00000485437.1 4332 15301628 15333727 − seg_94 15330250 15331650 ASB11 PIGA ENST00000480796.1 4333 15301166 15333778 − seg_94 15330250 15331650 ASB11 PIGA ENST00000357277.3 4334 16964814 17171395 + seg_97 16967100 16968150 REPS2 CC = NHS ENST00000380063.2 4335 16964814 17167136 + seg_97 16967100 16968150 REPS2 CC = NHS ENST00000481792.1 4336 16965193 17040494 + seg_97 16967100 16968150 REPS2 CC = NHS ENST00000303843.7 4337 16964985 17171395 + seg_97 16967100 16968150 REPS2 CC = NHS ENST00000357277.3 4338 16964814 17171395 + seg_98 17047350 17048350 REPS2 CC = NHS ENST00000380063.2 4339 16964814 17167136 + seg_98 17047350 17048350 REPS2 CC = NHS ENST00000380064.4 4340 16996667 17165745 + seg_98 17047350 17048350 REPS2 CC = NHS ENST00000303843.7 4341 16964985 17171395 + seg_98 17047350 17048350 REPS2 CC = NHS ENST00000360011.1 4342 17818171 17878827 − seg_100 17877100 17879400 RAI2 CC = NHS ENST00000331511.1 4343 17818171 17879356 − seg_100 17877100 17879400 RAI2 CC = NHS ENST00000545871.1 4344 17818171 17879457 − seg_100 17877100 17879400 RAI2 CC = NHS ENST00000451717.1 4345 17818171 17879457 − seg_100 17877100 17879400 RAI2 CC = NHS ENST00000415486.2 4346 17818171 17879457 − seg_100 17877100 17879400 RAI2 CC = NHS ENST00000453902.1 4347 17988317 18122764 − seg_101 18001050 18002050 RAI2 CDKL5 ENST00000380033.4 4348 18181051 18239003 − seg_104 18232100 18233200 BEND2 CDKL5 ENST00000380030.3 4349 18189095 18239024 − seg_104 18232100 18233200 BEND2 CDKL5 ENST00000380033.4 4350 18181051 18239003 − seg_105 18236850 18239450 BEND2 CDKL5 ENST00000380030.3 4351 18189095 18239024 − seg_105 18236850 18239450 BEND2 CDKL5 ENST00000379996.3 4352 18443703 18671749 + seg_107 18442500 18445000 CDKL5 CDKL5 ENST00000476595.1 4353 18660044 18668657 − seg_108 18661950 18663150 RS1 RS1 ENST00000379984.3 4354 18658030 18690229 − seg_108 18661950 18663150 RS1 RS1 ENST00000379996.3 4355 18443703 18671749 + seg_108 18661950 18663150 RS1 RS1 ENST00000379989.3 4356 18460308 18671745 + seg_108 18661950 18663150 RS1 RS1 ENST00000476595.1 4357 18660044 18668657 − seg_109 18667450 18668950 RS1 RS1 ENST00000379984.3 4358 18658030 18690229 − seg_109 18667450 18668950 RS1 RS1 ENST00000379996.3 4359 18443703 18671749 + seg_109 18667450 18668950 RS1 RS1 ENST00000379989.3 4360 18460308 18671745 + seg_109 18667450 18668950 RS1 RS1 ENST00000379942.4 4361 18910418 19002716 − seg_113 18931800 18932800 PHKA2 PHKA2 ENST00000470101.1 4362 19378178 19391296 − seg_118 19390850 19391950 PDHA1 PHKA2 ENST00000338883.4 4363 19378174 19533379 − seg_118 19390850 19391950 PDHA1 PHKA2 ENST00000359173.3 4364 19378176 19478245 − seg_118 19390850 19391950 PDHA1 PHKA2 ENST00000469203.2 4365 19378797 19504642 − seg_118 19390850 19391950 PDHA1 PHKA2 ENST00000518578.1 4366 19378174 19500394 − seg_118 19390850 19391950 PDHA1 PHKA2 ENST00000338883.4 4367 19378174 19533379 − seg_119 19395050 19396500 PDHA1 PHKA2 ENST00000359173.3 4368 19378176 19478245 − seg_119 19395050 19396500 PDHA1 PHKA2 ENST00000469203.2 4369 19378797 19504642 − seg_119 19395050 19396500 PDHA1 PHKA2 ENST00000518578.1 4370 19378174 19500394 − seg_119 19395050 19396500 PDHA1 PHKA2 ENST00000338883.4 4371 19378174 19533379 − seg_120 19398600 19399850 PDHA1 PHKA2 ENST00000359173.3 4372 19378176 19478245 − seg_120 19398600 19399850 PDHA1 PHKA2 ENST00000469203.2 4373 19378797 19504642 − seg_120 19398600 19399850 PDHA1 PHKA2 ENST00000518578.1 4374 19378174 19500394 − seg_120 19398600 19399850 PDHA1 PHKA2 ENST00000338883.4 4375 19378174 19533379 − seg_121 19504100 19505200 MAP3K15 PHKA2 ENST00000469203.2 4376 19378797 19504642 − seg_121 19504100 19505200 MAP3K15 PHKA2 ENST00000397804.1 4377 19553520 19725207 − seg_122 19602850 19605500 SH3KBP1 PHKA2 ENST00000379698.4 4378 19553811 19817869 − seg_122 19602850 19605500 SH3KBP1 PHKA2 ENST00000397821.3 4379 19552093 19905719 − seg_122 19602850 19605500 SH3KBP1 PHKA2 ENST00000379702.2 4380 19552083 19905719 − seg_122 19602850 19605500 SH3KBP1 PHKA2 ENST00000379726.3 4381 19554532 19764529 − seg_122 19602850 19605500 SH3KBP1 PHKA2 ENST00000541422.1 4382 19554308 19688480 − seg_122 19602850 19605500 SH3KBP1 PHKA2 ENST00000379716.1 4383 19552125 19689116 − seg_122 19602850 19605500 SH3KBP1 PHKA2 ENST00000397804.1 4384 19553520 19725207 − seg_123 19627300 19628350 SH3KBP1 PHKA2 ENST00000379698.4 4385 19553811 19817869 − seg_123 19627300 19628350 SH3KBP1 PHKA2 ENST00000397821.3 4386 19552093 19905719 − seg_123 19627300 19628350 SH3KBP1 PHKA2 ENST00000477102.1 4387 19610186 19682833 − seg_123 19627300 19628350 SH3KBP1 PHKA2 ENST00000379697.3 4388 19606396 19905577 − seg_123 19627300 19628350 SH3KBP1 PHKA2 ENST00000494961.1 4389 19606802 19713819 − seg_123 19627300 19628350 SH3KBP1 PHKA2 ENST00000379702.2 4390 19552083 19905719 − seg_123 19627300 19628350 SH3KBP1 PHKA2 ENST00000379726.3 4391 19554532 19764529 − seg_123 19627300 19628350 SH3KBP1 PHKA2 ENST00000541422.1 4392 19554308 19688480 − seg_123 19627300 19628350 SH3KBP1 PHKA2 ENST00000379716.1 4393 19552125 19689116 − seg_123 19627300 19628350 SH3KBP1 PHKA2 ENST00000397821.3 4394 19552093 19905719 − seg_124 19874700 19875850 SH3KBP1 PHKA2 ENST00000379697.3 4395 19606396 19905577 − seg_124 19874700 19875850 SH3KBP1 PHKA2 ENST00000379702.2 4396 19552083 19905719 − seg_124 19874700 19875850 SH3KBP1 PHKA2 ENST00000397821.3 4397 19552093 19905719 − seg_125 19904300 19906050 SH3KBP1 PHKA2 ENST00000379697.3 4398 19606396 19905577 − seg_125 19904300 19906050 SH3KBP1 PHKA2 ENST00000379702.2 4399 19552083 19905719 − seg_125 19904300 19906050 SH3KBP1 PHKA2 ENST00000330274.7 4400 20070519 20135114 − seg_127 20099150 20100450 MAP7D2 PHKA2 ENST00000379643.4 4401 20024833 20135114 − seg_127 20099150 20100450 MAP7D2 PHKA2 ENST00000544957.1 4402 20026440 20135022 − seg_127 20099150 20100450 MAP7D2 PHKA2 ENST00000443379.2 4403 20024833 20135114 − seg_127 20099150 20100450 MAP7D2 PHKA2 ENST00000379651.3 4404 20024831 20135016 − seg_127 20099150 20100450 MAP7D2 PHKA2 ENST00000452324.2 4405 20024833 20134756 − seg_127 20099150 20100450 MAP7D2 PHKA2 ENST00000330274.7 4406 20070519 20135114 − seg_128 20129200 20134650 MAP7D2 PHKA2 ENST00000379643.4 4407 20024833 20135114 − seg_128 20129200 20134650 MAP7D2 PHKA2 ENST00000544957.1 4408 20026440 20135022 − seg_128 20129200 20134650 MAP7D2 PHKA2 ENST00000443379.2 4409 20024833 20135114 − seg_128 20129200 20134650 MAP7D2 PHKA2 ENST00000379651.3 4410 20024831 20135016 − seg_128 20129200 20134650 MAP7D2 PHKA2 ENST00000452324.2 4411 20024833 20134756 − seg_128 20129200 20134650 MAP7D2 PHKA2 ENST00000379607.5 4412 20142636 20159962 − seg_129 20159600 20160600 EIF1AX PHKA2 ENST00000379593.1 4413 20146196 20159944 − seg_129 20159600 20160600 EIF1AX PHKA2 ENST00000404933.2 4414 21958691 22012953 + seg_133 21991750 21992750 SMS PHEX ENST00000379404.1 4415 21958833 22012591 + seg_133 21991750 21992750 SMS PHEX ENST00000457085.1 4416 21959163 21996229 + seg_133 21991750 21992750 SMS PHEX ENST00000478094.1 4417 21958896 21996107 + seg_133 21991750 21992750 SMS PHEX ENST00000415881.2 4418 21958853 22025798 + seg_133 21991750 21992750 SMS PHEX ENST00000424650.1 4419 22180850 22191100 − seg_134 22180550 22181700 PHEX PHEX ENST00000379374.4 4420 22050559 22269427 + seg_134 22180550 22181700 PHEX PHEX ENST00000537599.1 4421 22051016 22266300 + seg_134 22180550 22181700 PHEX PHEX ENST00000535894.1 4422 22056171 22266413 + seg_134 22180550 22181700 PHEX PHEX ENST00000418858.3 4423 22115822 22266209 + seg_134 22180550 22181700 PHEX PHEX ENST00000455399.1 4424 22407432 23082236 − seg_135 22537550 22538650 ZNF645 PHEX ENST00000455399.1 4425 22407432 23082236 − seg_136 22961950 22963000 DDX53 SAT = SAT1 ENST00000312214.5 4426 23093875 23094884 + seg_137 23093050 23094400 DDX53 SAT = SAT1 ENST00000508288.1 4427 23093708 23096495 − seg_137 23093050 23094400 DDX53 SAT = SAT1 ENST00000379361.4 4428 23352133 23422489 + seg_139 23412800 23413800 PTCHD1 SAT = SAT1 ENST00000439528.1 4429 23851480 23899018 − seg_141 23889950 23891000 APOO SAT = SAT1 ENST00000379226.4 4430 23851470 23926051 − seg_141 23889950 23891000 APOO SAT = SAT1 ENST00000379220.3 4431 23851481 23926057 − seg_141 23889950 23891000 APOO SAT = SAT1 ENST00000490078.1 4432 23851484 23926020 − seg_141 23889950 23891000 APOO SAT = SAT1 ENST00000379211.3 4433 23925918 23957624 + seg_142 23925150 23926350 APOO SAT = SAT1 ENST00000379226.4 4434 23851470 23926051 − seg_142 23925150 23926350 APOO SAT = SAT1 ENST00000379220.3 4435 23851481 23926057 − seg_142 23925150 23926350 APOO SAT = SAT1 ENST00000490078.1 4436 23851484 23926020 − seg_142 23925150 23926350 APOO SAT = SAT1 ENST00000486479.1 4437 24329024 24331432 − seg_146 24328700 24333250 ZFX SAT = SAT1 ENST00000536351.1 4438 24328979 24331432 − seg_146 24328700 24333250 ZFX SAT = SAT1 ENST00000413856.1 4439 24380878 24383541 + seg_147 24379450 24382100 PDK3 SAT = SAT1 ENST00000436466.1 4440 24380878 24383495 + seg_147 24379450 24382100 PDK3 SAT = SAT1 ENST00000441463.2 4441 24483573 24557954 + seg_149 24504450 24505550 PDK3 SAT = SAT1 ENST00000379162.4 4442 24483338 24552542 + seg_149 24504450 24505550 PDK3 SAT = SAT1 ENST00000379144.2 4443 24579959 24665353 − seg_151 24644850 24646050 PCYT1B SAT = SAT1 ENST00000356768.4 4444 24579959 24665275 − seg_151 24644850 24646050 PCYT1B SAT = SAT1 ENST00000379145.1 4445 24576204 24690794 − seg_151 24644850 24646050 PCYT1B SAT = SAT1 ENST00000496020.1 4446 24580518 24665155 − seg_151 24644850 24646050 PCYT1B SAT = SAT1 ENST00000379044.4 4447 25021811 25034065 − seg_152 25025650 25045000 ARX SAT = SAT1 ENST00000438281.1 4448 25047662 25048352 + seg_153 25046850 25048300 ARX SAT = SAT1 ENST00000378963.1 4449 30323791 30326605 − seg_158 30325950 30328550 NR0B1 DAX1 = NR0B1 ENST00000453287.1 4450 30323938 30327495 − seg_158 30325950 30328550 NR0B1 DAX1 = NR0B1 ENST00000378970.4 4451 30322323 30327715 − seg_158 30325950 30328550 NR0B1 DAX1 = NR0B1 ENST00000378932.2 4452 30848454 30993201 − seg_160 30955050 30956300 TAB3 DAX1 = NR0B1 ENST00000288422.2 4453 30848454 30993201 − seg_160 30955050 30956300 TAB3 DAX1 = NR0B1 ENST00000378932.2 4454 30848454 30993201 − seg_161 30992350 30993350 FTHL17 DAX1 = NR0B1 ENST00000288422.2 4455 30848454 30993201 − seg_161 30992350 30993350 FTHL17 DAX1 = NR0B1 ENST00000474231.1 4456 31139514 32173586 − seg_163 31691100 31692100 DMD DAX1 = NR0B1 ENST00000378684.4 4457 31132808 32430174 − seg_163 31691100 31692100 DMD DAX1 = NR0B1 ENST00000343523.2 4458 31137345 32173586 − seg_163 31691100 31692100 DMD DAX1 = NR0B1 ENST00000541735.1 4459 31137345 32173586 − seg_163 31691100 31692100 DMD DAX1 = NR0B1 ENST00000378682.4 4460 31132808 32430326 − seg_163 31691100 31692100 DMD DAX1 = NR0B1 ENST00000357033.4 4461 31137345 33229636 − seg_163 31691100 31692100 DMD DAX1 = NR0B1 ENST00000542849.1 4462 31137345 33229673 − seg_163 31691100 31692100 DMD DAX1 = NR0B1 ENST00000359836.1 4463 31137345 32173586 − seg_163 31691100 31692100 DMD DAX1 = NR0B1 ENST00000535280.1 4464 31137345 33146544 − seg_163 31691100 31692100 DMD DAX1 = NR0B1 ENST00000378707.3 4465 31137345 32173586 − seg_163 31691100 31692100 DMD DAX1 = NR0B1 ENST00000378677.2 4466 31137345 33146477 − seg_163 31691100 31692100 DMD DAX1 = NR0B1 ENST00000358062.2 4467 31137338 31893490 − seg_163 31691100 31692100 DMD DAX1 = NR0B1 ENST00000534884.1 4468 31132808 33038324 − seg_163 31691100 31692100 DMD DAX1 = NR0B1 ENST00000465285.1 4469 31139514 31947809 − seg_163 31691100 31692100 DMD DAX1 = NR0B1 ENST00000439992.1 4470 33744625 33960397 + seg_164 33817650 33818700 FAM47A DAX1 = NR0B1 ENST00000445233.1 4471 33760235 33960352 + seg_164 33817650 33818700 FAM47A DAX1 = NR0B1 ENST00000402402.2 4472 37351274 37351801 + seg_168 37351000 37352100 LANCL3 XK ENST00000465127.1 4473 37208583 38546928 + seg_168 37351000 37352100 LANCL3 XK ENST00000465127.1 4474 37208583 38546928 + seg_169 37733800 37734850 DYNLT3 CYBB ENST00000423919.1 4475 38080644 38082920 + seg_170 38078900 38081100 SRPX RPGR ENST00000432886.2 4476 38008589 38080177 − seg_170 38078900 38081100 SRPX RPGR ENST00000378533.3 4477 38008592 38080152 − seg_170 38078900 38081100 SRPX RPGR ENST00000538295.1 4478 38008589 38080177 − seg_170 38078900 38081100 SRPX RPGR ENST00000343800.6 4479 38008595 38080696 − seg_170 38078900 38081100 SRPX RPGR ENST00000544439.1 4480 38008589 38080177 − seg_170 38078900 38081100 SRPX RPGR ENST00000465127.1 4481 37208583 38546928 + seg_170 38078900 38081100 SRPX RPGR ENST00000457894.1 4482 38660685 38665781 + seg_171 38663050 38664250 MID1IP1 OTC ENST00000336949.6 4483 38662986 38665790 + seg_171 38663050 38664250 MID1IP1 OTC ENST00000436893.1 4484 38660821 38663136 − seg_171 38663050 38664250 MID1IP1 OTC ENST00000378474.3 4485 38660707 38665686 + seg_171 38663050 38664250 MID1IP1 OTC ENST00000342274.4 4486 39910501 40036582 − seg_183 40027900 40029300 BCOR CSNB1 = NYX ENST00000378455.4 4487 39910499 40036582 − seg_183 40027900 40029300 BCOR CSNB1 = NYX ENST00000406200.2 4488 39922208 40036573 − seg_183 40027900 40029300 BCOR CSNB1 = NYX ENST00000342595.2 4489 41306687 41334963 + seg_193 41306350 41307400 NYX CSNB1 = NYX ENST00000378220.1 4490 41306713 41334905 + seg_193 41306350 41307400 NYX CSNB1 = NYX ENST00000442175.1 4491 41958007 41958426 − seg_194 41958050 41959450 CASK CSNB1 = NYX ENST00000440002.1 4492 42315830 42558636 + seg_196 42505050 42506050 CASK CSNB1 = NYX ENST00000411879.1 4493 42111712 42558542 + seg_196 42505050 42506050 CASK CSNB1 = NYX ENST00000378062.5 4494 43808022 43832750 − seg_198 43830050 43831700 NDP NDP ENST00000470584.1 4495 43808928 43832632 − seg_198 43830050 43831700 NDP NDP ENST00000328306.4 4496 46464753 46618490 − seg_202 46464100 46465450 CHST7 UBA1 ENST00000446295.1 4497 47372001 47372882 − seg_207 47371600 47373400 CXorf24 UBA1 ENST00000340666.4 4498 47431303 47479252 − seg_208 47476800 47478350 SYN1 UBA1 ENST00000295987.7 4499 47431303 47479252 − seg_208 47476800 47478350 SYN1 UBA1 ENST00000483225.1 4500 47566590 47596027 + seg_209 47595750 47596900 UXT UBA1 ENST00000444248.1 4501 47662695 47664188 + seg_210 47661850 47663050 ZNF81 UBA1 ENST00000338709.3 4502 47657325 47664188 + seg_210 47661850 47663050 ZNF81 UBA1 ENST00000453735.1 4503 48166204 48168490 + seg_212 48165350 48166500 SSX9 WAS ENST00000407081.2 4504 48156255 48165614 − seg_212 48165350 48166500 SSX9 WAS ENST00000376909.1 4505 48154885 48165675 − seg_212 48165350 48166500 SSX9 WAS ENST00000422410.1 4506 48193110 48193874 − seg_214 48193350 48194400 SSX3 WAS ENST00000413071.1 4507 48239582 48242564 − seg_216 48240000 48241200 SSX4 WAS ENST00000376327.5 4508 49028273 49031588 + seg_219 49029700 49030700 PLP2 PQBP1 ENST00000376322.3 4509 49028273 49030030 + seg_219 49029700 49030700 PLP2 PQBP1 ENST00000323022.5 4510 49061523 49089833 − seg_220 49068450 49069750 CACNA1F PQBP1 ENST00000376265.2 4511 49061523 49089833 − seg_220 49068450 49069750 CACNA1F PQBP1 ENST00000376251.1 4512 49061523 49089771 − seg_220 49068450 49069750 CACNA1F PQBP1 ENST00000323022.5 4513 49061523 49089833 − seg_221 49074200 49075450 CACNA1F PQBP1 ENST00000376265.2 4514 49061523 49089833 − seg_221 49074200 49075450 CACNA1F PQBP1 ENST00000376251.1 4515 49061523 49089771 − seg_221 49074200 49075450 CACNA1F PQBP1 ENST00000492334.1 4516 49104172 49106976 + seg_222 49104450 49105650 FOXP3 PQBP1 ENST00000538876.1 4517 49091932 49106980 + seg_222 49104450 49105650 FOXP3 PQBP1 ENST00000376227.3 4518 49091927 49106987 + seg_222 49104450 49105650 FOXP3 PQBP1 ENST00000289292.7 4519 50334647 50557302 − seg_229 50450650 50451850 SHROOM4 CLCN5 ENST00000376020.2 4520 50334647 50557044 − seg_229 50450650 50451850 SHROOM4 CLCN5 ENST00000289292.7 4521 50334647 50557302 − seg_230 50555600 50557750 SHROOM4 CLCN5 ENST00000376020.2 4522 50334647 50557044 − seg_230 50555600 50557750 SHROOM4 CLCN5 ENST00000425150.1 4523 51099796 51139314 − seg_233 51126600 51128150 CXorf67 CLCN5 ENST00000491883.1 4524 51425000 51425485 − seg_236 51424500 51426000 GSPT2 CLCN5 ENST00000480752.1 4525 51453887 51454372 + seg_237 51452900 51456150 GSPT2 CLCN5 ENST00000375772.3 4526 51546103 51645450 + seg_239 51545600 51546650 GSPT2 MRX1 = IQSEC2 ENST00000408778.1 4527 51806443 51806570 − seg_241 51805500 51812400 MAGED4B MRX1 = IQSEC2 ENST00000514560.1 4528 51809141 51809753 − seg_241 51805500 51812400 MAGED4B MRX1 = IQSEC2 ENST00000486010.1 4529 51810106 51812268 − seg_241 51805500 51812400 MAGED4B MRX1 = IQSEC2 ENST00000486469.1 4530 51810098 51810701 − seg_241 51805500 51812400 MAGED4B MRX1 = IQSEC2 ENST00000480114.1 4531 51804925 51812303 − seg_241 51805500 51812400 MAGED4B MRX1 = IQSEC2 ENST00000470594.1 4532 51804923 51812278 − seg_241 51805500 51812400 MAGED4B MRX1 = IQSEC2 ENST00000471617.1 4533 51804935 51807173 − seg_241 51805500 51812400 MAGED4B MRX1 = IQSEC2 ENST00000497164.1 4534 51804923 51812278 − seg_241 51805500 51812400 MAGED4B MRX1 = IQSEC2 ENST00000481193.2 4535 51805652 51808388 − seg_241 51805500 51812400 MAGED4B MRX1 = IQSEC2 ENST00000490581.2 4536 51804923 51807639 − seg_241 51805500 51812400 MAGED4B MRX1 = IQSEC2 ENST00000335504.5 4537 51804923 51812344 − seg_241 51805500 51812400 MAGED4B MRX1 = IQSEC2 ENST00000360134.6 4538 51804923 51812294 − seg_241 51805500 51812400 MAGED4B MRX1 = IQSEC2 ENST00000431659.1 4539 51804923 51812368 − seg_241 51805500 51812400 MAGED4B MRX1 = IQSEC2 ENST00000481096.2 4540 51804923 51809773 − seg_241 51805500 51812400 MAGED4B MRX1 = IQSEC2 ENST00000485287.1 4541 51804923 51812315 − seg_241 51805500 51812400 MAGED4B MRX1 = IQSEC2 ENST00000477634.1 4542 51928008 51935364 + seg_242 51929300 51932300 MAGED4 MRX1 = IQSEC2 ENST00000416960.1 4543 51927919 51935364 + seg_242 51929300 51932300 MAGED4 MRX1 = IQSEC2 ENST00000474812.1 4544 51929586 51930176 + seg_242 51929300 51932300 MAGED4 MRX1 = IQSEC2 ENST00000488430.1 4545 51927983 51935364 + seg_242 51929300 51932300 MAGED4 MRX1 = IQSEC2 ENST00000459685.1 4546 51927972 51935364 + seg_242 51929300 51932300 MAGED4 MRX1 = IQSEC2 ENST00000471932.1 4547 51927943 51935364 + seg_242 51929300 51932300 MAGED4 MRX1 = IQSEC2 ENST00000467526.1 4548 51928019 51930190 + seg_242 51929300 51932300 MAGED4 MRX1 = IQSEC2 ENST00000479281.1 4549 51930729 51935364 + seg_242 51929300 51932300 MAGED4 MRX1 = IQSEC2 ENST00000375626.3 4550 51928008 51935364 + seg_242 51929300 51932300 MAGED4 MRX1 = IQSEC2 ENST00000498483.1 4551 51928008 51935364 + seg_242 51929300 51932300 MAGED4 MRX1 = IQSEC2 ENST00000477634.1 4552 51928008 51935364 + seg_243 51935000 51936100 MAGED4 MRX1 = IQSEC2 ENST00000497416.1 4553 51933114 51935352 + seg_243 51935000 51936100 MAGED4 MRX1 = IQSEC2 ENST00000416960.1 4554 51927919 51935364 + seg_243 51935000 51936100 MAGED4 MRX1 = IQSEC2 ENST00000497348.1 4555 51934138 51935280 + seg_243 51935000 51936100 MAGED4 MRX1 = IQSEC2 ENST00000488430.1 4556 51927983 51935364 + seg_243 51935000 51936100 MAGED4 MRX1 = IQSEC2 ENST00000459685.1 4557 51927972 51935364 + seg_243 51935000 51936100 MAGED4 MRX1 = IQSEC2 ENST00000471932.1 4558 51927943 51935364 + seg_243 51935000 51936100 MAGED4 MRX1 = IQSEC2 ENST00000479281.1 4559 51930729 51935364 + seg_243 51935000 51936100 MAGED4 MRX1 = IQSEC2 ENST00000375626.3 4560 51928008 51935364 + seg_243 51935000 51936100 MAGED4 MRX1 = IQSEC2 ENST00000498483.1 4561 51928008 51935364 + seg_243 51935000 51936100 MAGED4 MRX1 = IQSEC2 ENST00000518075.1 4562 52235228 52243951 + seg_245 52239900 52241050 XAGE1B MRX1 = IQSEC2 ENST00000375612.4 4563 52239019 52243954 + seg_245 52239900 52241050 XAGE1B MRX1 = IQSEC2 ENST00000375616.1 4564 52238818 52243954 + seg_245 52239900 52241050 XAGE1B MRX1 = IQSEC2 ENST00000399805.2 4565 52240504 52243954 + seg_245 52239900 52241050 XAGE1B MRX1 = IQSEC2 ENST00000437949.2 4566 52238810 52243954 + seg_245 52239900 52241050 XAGE1B MRX1 = IQSEC2 ENST00000494039.1 4567 52241006 52243954 + seg_245 52239900 52241050 XAGE1B MRX1 = IQSEC2 ENST00000519579.1 4568 52238925 52240863 + seg_245 52239900 52241050 XAGE1B MRX1 = IQSEC2 ENST00000375613.3 4569 52238974 52243954 + seg_245 52239900 52241050 XAGE1B MRX1 = IQSEC2 ENST00000478767.1 4570 52528159 52531107 − seg_249 52530600 52532500 XAGE1D MRX1 = IQSEC2 ENST00000374959.3 4571 52528162 52533139 − seg_249 52530600 52532500 XAGE1D MRX1 = IQSEC2 ENST00000375578.1 4572 52528159 52533295 − seg_249 52530600 52532500 XAGE1D MRX1 = IQSEC2 ENST00000396497.3 4573 52528159 52533303 − seg_249 52530600 52532500 XAGE1D MRX1 = IQSEC2 ENST00000438079.1 4574 52528159 52531609 − seg_249 52530600 52532500 XAGE1D MRX1 = IQSEC2 ENST00000375572.4 4575 52528159 52533094 − seg_249 52530600 52532500 XAGE1D MRX1 = IQSEC2 ENST00000375563.4 4576 52541053 52545988 − seg_250 52543750 52545000 XAGE1E MRX1 = IQSEC2 ENST00000375567.3 4577 52541053 52546033 − seg_250 52543750 52545000 XAGE1E MRX1 = IQSEC2 ENST00000375570.1 4578 52541053 52546189 − seg_250 52543750 52545000 XAGE1E MRX1 = IQSEC2 ENST00000463689.1 4579 52541053 52544001 − seg_250 52543750 52545000 XAGE1E MRX1 = IQSEC2 ENST00000429372.2 4580 52541053 52546197 − seg_250 52543750 52545000 XAGE1E MRX1 = IQSEC2 ENST00000443473.1 4581 52701768 52706101 + seg_252 52705000 52706750 SSX7 MRX1 = IQSEC2 ENST00000434905.1 4582 52810501 52814830 − seg_254 52809850 52811650 SPANXN5 MRX1 = IQSEC2 ENST00000414788.1 4583 52920646 52929617 + seg_255 52919850 52921300 FAM156B MRX1 = IQSEC2 ENST00000452154.2 4584 52920336 52937089 + seg_255 52919850 52921300 FAM156B MRX1 = IQSEC2 ENST00000458697.1 4585 52925995 52929686 + seg_256 52925850 52927100 FAM156B MRX1 = IQSEC2 ENST00000414788.1 4586 52920646 52929617 + seg_256 52925850 52927100 FAM156B MRX1 = IQSEC2 ENST00000430150.2 4587 52926322 52937587 + seg_256 52925850 52927100 FAM156B MRX1 = IQSEC2 ENST00000452154.2 4588 52920336 52937089 + seg_256 52925850 52927100 FAM156B MRX1 = IQSEC2 ENST00000452021.2 4589 52926351 52937562 + seg_256 52925850 52927100 FAM156B MRX1 = IQSEC2 ENST00000412319.1 4590 52926426 52937587 + seg_256 52925850 52927100 FAM156B MRX1 = IQSEC2 ENST00000451084.2 4591 52977462 53024634 − seg_257 52989600 52990850 FAM156A MRX1 = IQSEC2 ENST00000510893.1 4592 52985477 52993695 − seg_257 52989600 52990850 FAM156A MRX1 = IQSEC2 ENST00000416923.1 4593 52977768 53024632 − seg_257 52989600 52990850 FAM156A MRX1 = IQSEC2 ENST00000511863.1 4594 52984353 53024651 − seg_257 52989600 52990850 FAM156A MRX1 = IQSEC2 ENST00000414076.2 4595 52976960 53024551 − seg_257 52989600 52990850 FAM156A MRX1 = IQSEC2 ENST00000505988.1 4596 52977787 53024551 − seg_257 52989600 52990850 FAM156A MRX1 = IQSEC2 ENST00000512364.1 4597 52976462 53024644 − seg_257 52989600 52990850 FAM156A MRX1 = IQSEC2 ENST00000447562.1 4598 52977471 52993386 − seg_257 52989600 52990850 FAM156A MRX1 = IQSEC2 ENST00000475552.1 4599 52977803 53024634 − seg_257 52989600 52990850 FAM156A MRX1 = IQSEC2 ENST00000515858.1 4600 52994637 53024651 − seg_258 52994300 52995300 FAM156A MRX1 = IQSEC2 ENST00000451084.2 4601 52977462 53024634 − seg_258 52994300 52995300 FAM156A MRX1 = IQSEC2 ENST00000416923.1 4602 52977768 53024632 − seg_258 52994300 52995300 FAM156A MRX1 = IQSEC2 ENST00000511863.1 4603 52984353 53024651 − seg_258 52994300 52995300 FAM156A MRX1 = IQSEC2 ENST00000414076.2 4604 52976960 53024551 − seg_258 52994300 52995300 FAM156A MRX1 = IQSEC2 ENST00000505988.1 4605 52977787 53024551 − seg_258 52994300 52995300 FAM156A MRX1 = IQSEC2 ENST00000512364.1 4606 52976462 53024644 − seg_258 52994300 52995300 FAM156A MRX1 = IQSEC2 ENST00000505062.1 4607 52994760 53024651 − seg_258 52994300 52995300 FAM156A MRX1 = IQSEC2 ENST00000475552.1 4608 52977803 53024634 − seg_258 52994300 52995300 FAM156A MRX1 = IQSEC2 ENST00000375365.2 4609 53263292 53310796 − seg_260 53284450 53286250 IQSEC2 MRX1 = IQSEC2 ENST00000396435.3 4610 53262058 53350522 − seg_260 53284450 53286250 IQSEC2 MRX1 = IQSEC2 ENST00000375368.5 4611 53262059 53350522 − seg_260 53284450 53286250 IQSEC2 MRX1 = IQSEC2 ENST00000396435.3 4612 53262058 53350522 − seg_261 53329950 53331050 IQSEC2 MRX1 = IQSEC2 ENST00000375368.5 4613 53262059 53350522 − seg_261 53329950 53331050 IQSEC2 MRX1 = IQSEC2 ENST00000396435.3 4614 53262058 53350522 − seg_262 53348300 53351800 IQSEC2 MRX1 = IQSEC2 ENST00000375368.5 4615 53262059 53350522 − seg_262 53348300 53351800 IQSEC2 MRX1 = IQSEC2 ENST00000453905.1 4616 54044212 54075368 − seg_267 54070050 54071100 PHF8 PHF8 ENST00000415025.1 4617 54044204 54070495 − seg_267 54070050 54071100 PHF8 PHF8 ENST00000437224.1 4618 54044203 54075391 − seg_267 54070050 54071100 PHF8 PHF8 ENST00000338154.6 4619 53963109 54070607 − seg_267 54070050 54071100 PHF8 PHF8 ENST00000357988.5 4620 53963109 54071682 − seg_267 54070050 54071100 PHF8 PHF8 ENST00000396277.3 4621 53963115 54070607 − seg_267 54070050 54071100 PHF8 PHF8 ENST00000338946.6 4622 53963115 54070607 − seg_267 54070050 54071100 PHF8 PHF8 ENST00000354646.2 4623 54219258 54384438 − seg_268 54221650 54222700 FAM120C PHF8 ENST00000375169.3 4624 54219256 54384438 − seg_268 54221650 54222700 FAM120C PHF8 ENST00000375159.2 4625 54224757 54360106 − seg_269 54315000 54316050 WNK3 FGD1 ENST00000354646.2 4626 54219258 54384438 − seg_269 54315000 54316050 WNK3 FGD1 ENST00000375169.3 4627 54219256 54384438 − seg_269 54315000 54316050 WNK3 FGD1 ENST00000375135.3 4628 54471887 54522599 − seg_271 54521250 54522900 FGD1 FGD1 ENST00000537277.1 4629 54475243 54522322 − seg_271 54521250 54522900 FGD1 FGD1 ENST00000218436.6 4630 54775332 54824673 − seg_272 54776750 54777850 ITIH6 FGD1 ENST00000471758.1 4631 55026826 55033190 + seg_273 55026400 55027550 APEX2 ALAS2 ENST00000374987.3 4632 55026790 55035490 + seg_273 55026400 55027550 APEX2 ALAS2 ENST00000452532.1 4633 55934556 56041606 + seg_276 56029500 56030800 AL353698.1 ALAS2 ENST00000423617.1 4634 56755789 56844059 + seg_278 56787300 56788350 UBQLN2 ALAS2 ENST00000451583.1 4635 56755806 56843809 + seg_278 56787300 56788350 UBQLN2 ALAS2 ENST00000374922.4 4636 56755692 56844813 + seg_278 56787300 56788350 UBQLN2 ALAS2 ENST00000437625.1 4637 56755677 56843883 + seg_278 56787300 56788350 UBQLN2 ALAS2 ENST00000374870.4 4638 62854856 62975031 − seg_306 62967650 62969200 ARHGEF9 AR ENST00000437457.2 4639 62854856 63005426 − seg_306 62967650 62969200 ARHGEF9 AR ENST00000374878.1 4640 62854847 63005413 − seg_306 62967650 62969200 ARHGEF9 AR ENST00000495564.1 4641 62857860 62974991 − seg_306 62967650 62969200 ARHGEF9 AR ENST00000253401.6 4642 62854847 62974993 − seg_306 62967650 62969200 ARHGEF9 AR ENST00000374872.1 4643 62857862 62974988 − seg_306 62967650 62969200 ARHGEF9 AR ENST00000374869.3 4644 63404997 63425624 − seg_308 63412200 63413300 AMER1 AR ENST00000403336.1 4645 63405997 63413166 − seg_308 63412200 63413300 AMER1 AR ENST00000330258.3 4646 63404997 63425624 − seg_308 63412200 63413300 AMER1 AR ENST00000488406.1 4647 64137280 64140007 − seg_309 64138750 64139800 ZC4H2 AR ENST00000447788.2 4648 64136250 64196413 − seg_309 64138750 64139800 ZC4H2 AR ENST00000374839.3 4649 64136261 64196364 − seg_309 64138750 64139800 ZC4H2 AR ENST00000476032.1 4650 64137738 64196243 − seg_309 64138750 64139800 ZC4H2 AR ENST00000488608.1 4651 64136368 64196413 − seg_309 64138750 64139800 ZC4H2 AR ENST00000545618.1 4652 64136250 64196328 − seg_309 64138750 64139800 ZC4H2 AR ENST00000492653.1 4653 64137660 64196353 − seg_309 64138750 64139800 ZC4H2 AR ENST00000337990.2 4654 64136262 64254593 − seg_309 64138750 64139800 ZC4H2 AR ENST00000488831.1 4655 64137720 64254549 − seg_309 64138750 64139800 ZC4H2 AR ENST00000440433.1 4656 64770778 64772301 − seg_310 64770000 64772700 LAS1L AR ENST00000538891.1 4657 66764989 66766608 + seg_312 66763900 66766950 AR AR ENST00000396044.3 4658 66764986 66943778 + seg_312 66763900 66766950 AR AR ENST00000513847.1 4659 66764662 66909605 + seg_312 66763900 66766950 AR AR ENST00000544984.1 4660 66763874 66944119 + seg_312 66763900 66766950 AR AR ENST00000514029.1 4661 66764662 66915917 + seg_312 66763900 66766950 AR AR ENST00000374690.3 4662 66764465 66950461 + seg_312 66763900 66766950 AR AR ENST00000504326.1 4663 66764662 66915917 + seg_312 66763900 66766950 AR AR ENST00000488088.1 4664 67867508 67876393 + seg_313 67871900 67872900 STARD8 ED1 = EDA ENST00000374599.3 4665 67867610 67945678 + seg_313 67871900 67872900 STARD8 ED1 = EDA ENST00000523864.1 4666 67867511 67945684 + seg_313 67871900 67872900 STARD8 ED1 = EDA ENST00000252336.6 4667 67867511 67945682 + seg_313 67871900 67872900 STARD8 ED1 = EDA ENST00000204961.4 4668 68048840 68061990 + seg_314 68048550 68051950 EFNB1 ED1 = EDA ENST00000399711.1 4669 68399400 68429767 + seg_318 68406000 68407300 PJA1 ED1 = EDA ENST00000399711.1 4670 68399400 68429767 + seg_319 68423100 68425000 PJA1 ED1 = EDA ENST00000338901.3 4671 68835911 68890104 + seg_322 68836650 68837650 EDA ED1 = EDA ENST00000374548.1 4672 68835911 69177354 + seg_322 68836650 68837650 EDA ED1 = EDA ENST00000525810.1 4673 68835911 69080892 + seg_322 68836650 68837650 EDA ED1 = EDA ENST00000513754.2 4674 68835911 69177327 + seg_322 68836650 68837650 EDA ED1 = EDA ENST00000533317.1 4675 68835911 69177327 + seg_322 68836650 68837650 EDA ED1 = EDA ENST00000527388.1 4676 68835911 69080892 + seg_322 68836650 68837650 EDA ED1 = EDA ENST00000502251.1 4677 68835911 69177354 + seg_322 68836650 68837650 EDA ED1 = EDA ENST00000374552.4 4678 68835911 69259319 + seg_322 68836650 68837650 EDA ED1 = EDA ENST00000374553.2 4679 68835911 69259319 + seg_322 68836650 68837650 EDA ED1 = EDA ENST00000524573.1 4680 68835961 69255487 + seg_322 68836650 68837650 EDA ED1 = EDA ENST00000342206.6 4681 69353299 69386174 + seg_323 69354600 69355600 IGBP1 ED1 = EDA ENST00000356413.4 4682 69353313 69386174 + seg_323 69354600 69355600 IGBP1 ED1 = EDA ENST00000194900.4 4683 69664711 69725337 + seg_325 69663950 69665850 DLG3 GJB1 ENST00000463252.1 4684 69664986 69723796 + seg_325 69663950 69665850 DLG3 GJB1 ENST00000374360.3 4685 69664819 69725337 + seg_325 69663950 69665850 DLG3 GJB1 ENST00000344304.3 4686 69748791 70117396 − seg_326 70013100 70014100 TEX11 GJB1 ENST00000395889.2 4687 69748791 70128561 − seg_326 70013100 70014100 TEX11 GJB1 ENST00000374333.2 4688 69748790 70128581 − seg_326 70013100 70014100 TEX11 GJB1 ENST00000374051.3 4689 70364693 70391051 + seg_327 70368600 70369750 NLGN3 GJB1 ENST00000395855.2 4690 70364693 70387607 + seg_327 70368600 70369750 NLGN3 GJB1 ENST00000536169.1 4691 70364681 70391049 + seg_327 70368600 70369750 NLGN3 GJB1 ENST00000358741.3 4692 70364712 70390143 + seg_327 70368600 70369750 NLGN3 GJB1 ENST00000542063.1 4693 70364686 70390964 + seg_327 70368600 70369750 NLGN3 GJB1 ENST00000447581.1 4694 70435109 70443810 + seg_328 70435950 70436950 GJB1 GJB1 ENST00000374029.1 4695 70435044 70445050 + seg_328 70435950 70436950 GJB1 GJB1 ENST00000374022.3 4696 70435062 70445366 + seg_328 70435950 70436950 GJB1 GJB1 ENST00000447581.1 4697 70435109 70443810 + seg_329 70443150 70444550 GJB1 GJB1 ENST00000374029.1 4698 70435044 70445050 + seg_329 70443150 70444550 GJB1 GJB1 ENST00000361726.6 4699 70443056 70445048 + seg_329 70443150 70444550 GJB1 GJB1 ENST00000374022.3 4700 70435062 70445366 + seg_329 70443150 70444550 GJB1 GJB1 ENST00000422194.1 4701 70882845 70885603 − seg_331 70877750 70883200 CXCR3 GJB1 ENST00000433410.1 4702 70882848 70884121 − seg_331 70877750 70883200 CXCR3 GJB1 ENST00000508574.1 4703 70917046 70926305 + seg_332 70920450 70921550 CXCR3 GJB1 ENST00000417668.1 4704 70938992 70939460 + seg_333 70931300 70944400 CXCR3 GJB1 ENST00000457716.1 4705 70939766 70940650 + seg_333 70931300 70944400 CXCR3 GJB1 ENST00000535490.1 4706 70934224 70938135 − seg_333 70931300 70944400 CXCR3 GJB1 ENST00000452468.1 4707 70934221 70936237 − seg_333 70931300 70944400 CXCR3 GJB1 ENST00000456199.1 4708 70981815 70982283 − seg_336 70973450 70990950 CXCR3 GJB1 ENST00000439926.1 4709 70980625 70981509 − seg_336 70973450 70990950 CXCR3 GJB1 ENST00000440412.1 4710 70985038 70987054 + seg_336 70973450 70990950 CXCR3 GJB1 ENST00000542739.1 4711 70983140 70987051 + seg_336 70973450 70990950 CXCR3 GJB1 ENST00000408757.1 4712 70979235 70979305 − seg_336 70973450 70990950 CXCR3 GJB1 ENST00000540800.1 4713 71130938 71363424 + seg_339 71130200 71132050 NHSL2 GJB1 ENST00000540800.1 4714 71130938 71363424 + seg_340 71237900 71239300 NHSL2 GJB1 ENST00000540800.1 4715 71130938 71363424 + seg_341 71241400 71242500 RGAG4 GJB1 ENST00000540800.1 4716 71130938 71363424 + seg_342 71279100 71280300 RGAG4 GJB1 ENST00000479991.1 4717 71346960 71351751 − seg_343 71350200 71352700 RGAG4 GJB1 ENST00000545866.1 4718 71346958 71351758 − seg_343 71350200 71352700 RGAG4 GJB1 ENST00000513469.1 4719 71352000 71354556 + seg_343 71350200 71352700 RGAG4 GJB1 ENST00000540800.1 4720 71130938 71363424 + seg_343 71350200 71352700 RGAG4 GJB1 ENST00000456343.2 4721 71364034 71381600 + seg_344 71364150 71365850 NHSL2 GJB1 ENST00000246139.5 4722 71521500 71526837 − seg_345 71525750 71529400 CITED1 GJB1 ENST00000445983.1 4723 71521490 71525764 − seg_345 71525750 71529400 CITED1 GJB1 ENST00000431381.1 4724 71521490 71525764 − seg_345 71525750 71529400 CITED1 GJB1 ENST00000453707.2 4725 71521488 71527000 − seg_345 71525750 71529400 CITED1 GJB1 ENST00000454225.1 4726 71522056 71526757 − seg_345 71525750 71529400 CITED1 GJB1 ENST00000373619.3 4727 71521497 71527037 − seg_345 71525750 71529400 CITED1 GJB1 ENST00000339490.3 4728 71798665 71934029 − seg_346 71800550 71801550 HDAC8 GJB1 ENST00000373542.4 4729 71798664 71933888 − seg_346 71800550 71801550 HDAC8 GJB1 ENST00000541944.1 4730 71798665 71934029 − seg_346 71800550 71801550 HDAC8 GJB1 ENST00000373545.3 4731 71798664 71934167 − seg_346 71800550 71801550 HDAC8 GJB1 ENST00000373539.3 4732 71800477 71934106 − seg_346 71800550 71801550 HDAC8 GJB1 ENST00000472595.1 4733 71996833 72068636 + seg_348 72011750 72013700 DMRTC1B GJB1 ENST00000334036.5 4734 71996972 72068632 + seg_348 72011750 72013700 DMRTC1B GJB1 ENST00000483816.1 4735 72091859 72163653 − seg_349 72136450 72138350 LINC00684 GJB1 ENST00000483816.1 4736 72091859 72163653 − seg_350 72146600 72148500 LINC00684 GJB1 ENST00000373527.1 4737 72158003 72158798 + seg_351 72157050 72158200 LINC00684 GJB1 ENST00000373524.1 4738 72158069 72158780 + seg_351 72157050 72158200 LINC00684 GJB1 ENST00000483816.1 4739 72091859 72163653 − seg_351 72157050 72158200 LINC00684 GJB1 ENST00000373514.1 4740 72667088 72675081 + seg_352 72666800 72668350 CDX4 ABCB7 ENST00000430772.1 4741 73467699 73513362 − seg_355 73498350 73499350 ZCCHC13 ABCB7 ENST00000429124.1 4742 73498209 73512435 − seg_355 73498350 73499350 ZCCHC13 ABCB7 ENST00000276033.4 4743 73640638 73753752 + seg_356 73642400 73643800 SLC16A2 ABCB7 ENST00000055682.5 4744 73952692 74145287 − seg_357 74055400 74056550 KIAA2022 ABCB7 ENST00000373468.1 4745 73952684 74145320 − seg_357 74055400 74056550 KIAA2022 ABCB7 ENST00000350425.4 4746 77166194 77305892 + seg_358 77165200 77166850 COX7B ATP7A ENST00000341514.6 4747 77166199 77305892 + seg_358 77165200 77166850 COX7B ATP7A ENST00000343533.5 4748 77166194 77305892 + seg_358 77165200 77166850 COX7B ATP7A ENST00000400860.5 4749 77166224 77302211 + seg_358 77165200 77166850 COX7B ATP7A ENST00000343912.6 4750 77166194 77301057 + seg_358 77165200 77166850 COX7B ATP7A ENST00000458128.1 4751 77223458 77225135 − seg_359 77223450 77224850 PGAM4 ATP7A ENST00000355691.5 4752 77220936 77268087 + seg_359 77223450 77224850 PGAM4 ATP7A ENST00000350425.4 4753 77166194 77305892 + seg_359 77223450 77224850 PGAM4 ATP7A ENST00000341514.6 4754 77166199 77305892 + seg_359 77223450 77224850 PGAM4 ATP7A ENST00000343533.5 4755 77166194 77305892 + seg_359 77223450 77224850 PGAM4 ATP7A ENST00000400860.5 4756 77166224 77302211 + seg_359 77223450 77224850 PGAM4 ATP7A ENST00000343912.6 4757 77166194 77301057 + seg_359 77223450 77224850 PGAM4 ATP7A ENST00000350425.4 4758 77166194 77305892 + seg_360 77296400 77297850 PGK1 PGK1 ENST00000341514.6 4759 77166199 77305892 + seg_360 77296400 77297850 PGK1 PGK1 ENST00000343533.5 4760 77166194 77305892 + seg_360 77296400 77297850 PGK1 PGK1 ENST00000400860.5 4761 77166224 77302211 + seg_360 77296400 77297850 PGK1 PGK1 ENST00000343912.6 4762 77166194 77301057 + seg_360 77296400 77297850 PGK1 PGK1 ENST00000476373.1 4763 79270268 79278153 + seg_363 79277400 79278700 TBX22 PGK1 ENST00000373296.3 4764 79270255 79286872 + seg_363 79277400 79278700 TBX22 PGK1 ENST00000373291.1 4765 79278568 79287268 + seg_363 79277400 79278700 TBX22 PGK1 ENST00000373294.5 4766 79277741 79287268 + seg_363 79277400 79278700 TBX22 PGK1 ENST00000442340.1 4767 79270255 79287268 + seg_363 79277400 79278700 TBX22 PGK1 ENST00000544771.1 4768 83116170 83254350 + seg_367 83187600 83188750 CYLC1 CHM ENST00000437961.1 4769 85106580 85106687 − seg_368 85105500 85106600 CHM CHM ENST00000395337.2 4770 91034260 91139006 + seg_373 91035500 91036850 PCDH11X CHM ENST00000373034.4 4771 99546642 99665271 − seg_375 99556100 99557150 PCDH19 BTK ENST00000255531.7 4772 99546644 99665271 − seg_375 99556100 99557150 PCDH19 BTK ENST00000420881.2 4773 99546642 99663595 − seg_375 99556100 99557150 PCDH19 BTK ENST00000373020.4 4774 99883667 99891803 − seg_377 99891050 99892300 TSPAN6 BTK ENST00000431386.2 4775 99884765 99891848 − seg_377 99891050 99892300 TSPAN6 BTK ENST00000496771.1 4776 99887538 99891686 − seg_377 99891050 99892300 TSPAN6 BTK ENST00000494424.1 4777 99888439 99894988 − seg_377 99891050 99892300 TSPAN6 BTK ENST00000455616.1 4778 99929491 99986522 − seg_378 99934950 99936050 SYTL4 BTK ENST00000372989.1 4779 99929488 99986498 − seg_378 99934950 99936050 SYTL4 BTK ENST00000276141.6 4780 99929491 99986522 − seg_378 99934950 99936050 SYTL4 BTK ENST00000454200.2 4781 99929491 99986522 − seg_378 99934950 99936050 SYTL4 BTK ENST00000263033.5 4782 99930894 99987108 − seg_378 99934950 99936050 SYTL4 BTK ENST00000444892.2 4783 100333871 100350296 + seg_380 100334000 100335900 TMEM35 BTK ENST00000372930.4 4784 100333709 100351353 + seg_380 100334000 100335900 TMEM35 BTK ENST00000538510.1 4785 100486534 100519485 + seg_381 100509100 100510450 DRP2 BTK ENST00000541709.1 4786 100474933 100519485 + seg_381 100509100 100510450 DRP2 BTK ENST00000402866.1 4787 100474758 100519486 + seg_381 100509100 100510450 DRP2 BTK ENST00000395209.3 4788 100474775 100519486 + seg_381 100509100 100510450 DRP2 BTK ENST00000453574.1 4789 100673287 100674171 + seg_382 100672350 100673500 HNRNPH2 GLA ENST00000430461.1 4790 100673286 100701120 + seg_382 100672350 100673500 HNRNPH2 GLA ENST00000433011.1 4791 100673275 100788446 + seg_382 100672350 100673500 HNRNPH2 GLA ENST00000452188.1 4792 100740420 100788446 + seg_383 100744750 100745800 ARMCX4 GLA ENST00000455331.1 4793 100740440 100754031 + seg_383 100744750 100745800 ARMCX4 GLA ENST00000442270.1 4794 100740443 100788446 + seg_383 100744750 100745800 ARMCX4 GLA ENST00000354842.4 4795 100740462 100788446 + seg_383 100744750 100745800 ARMCX4 GLA ENST00000433011.1 4796 100673275 100788446 + seg_383 100744750 100745800 ARMCX4 GLA ENST00000423738.2 4797 100740440 100750794 + seg_383 100744750 100745800 ARMCX4 GLA ENST00000445416.1 4798 100740241 100771941 + seg_383 100744750 100745800 ARMCX4 GLA ENST00000392722.2 4799 100792472 100794237 − seg_384 100793500 100794650 ARMCX1 GLA ENST00000372828.2 4800 100852488 100853049 + seg_385 100852500 100853550 ARMCX6 GLA ENST00000448512.1 4801 101470280 101567445 + seg_387 101564000 101565000 NXF2 GLA ENST00000372758.1 4802 101478939 101581631 + seg_387 101564000 101565000 NXF2 GLA ENST00000372763.1 4803 101478829 101581634 + seg_387 101564000 101565000 NXF2 GLA ENST00000330252.5 4804 101470280 101581631 + seg_387 101564000 101565000 NXF2 GLA ENST00000372757.1 4805 101502170 101581631 + seg_387 101564000 101565000 NXF2 GLA ENST00000395088.2 4806 101470280 101581634 + seg_387 101564000 101565000 NXF2 GLA ENST00000289373.4 4807 101768604 101771712 − seg_389 101770350 101771700 TMSB15A GLA ENST00000372680.1 4808 102528619 102531800 − seg_390 102529150 102533650 TCEAL5 GLA ENST00000449185.1 4809 102564600 102565863 − seg_391 102564750 102566250 BEX2 GLA ENST00000372674.1 4810 102564430 102565935 − seg_391 102564750 102566250 BEX2 GLA ENST00000372677.3 4811 102564274 102565974 − seg_391 102564750 102566250 BEX2 GLA ENST00000536889.1 4812 102564282 102565883 − seg_391 102564750 102566250 BEX2 GLA ENST00000332431.4 4813 102585124 102587254 + seg_392 102585450 102586700 TCEAL7 GLA ENST00000372666.1 4814 102585157 102587016 + seg_392 102585450 102586700 TCEAL7 GLA ENST00000425011.1 4815 102840543 102841777 + seg_393 102840700 102841750 TCEAL4 GLA ENST00000481555.1 4816 102840433 102841427 + seg_393 102840700 102841750 TCEAL4 GLA ENST00000490644.1 4817 102840451 102841833 + seg_393 102840700 102841750 TCEAL4 GLA ENST00000469586.1 4818 102841064 102841991 + seg_393 102840700 102841750 TCEAL4 GLA ENST00000434216.2 4819 102840506 102841753 + seg_393 102840700 102841750 TCEAL4 GLA ENST00000459722.1 4820 102840456 102841877 + seg_393 102840700 102841750 TCEAL4 GLA ENST00000472484.1 4821 102840441 102842657 + seg_393 102840700 102841750 TCEAL4 GLA ENST00000468024.1 4822 102840420 102842446 + seg_393 102840700 102841750 TCEAL4 GLA ENST00000472745.1 4823 102840461 102842622 + seg_393 102840700 102841750 TCEAL4 GLA ENST00000494801.1 4824 102840491 102842454 + seg_393 102840700 102841750 TCEAL4 GLA ENST00000415568.2 4825 102840443 102842430 + seg_393 102840700 102841750 TCEAL4 GLA ENST00000372629.4 4826 102831159 102842446 + seg_393 102840700 102841750 TCEAL4 GLA ENST00000414064.2 4827 102840445 102842653 + seg_393 102840700 102841750 TCEAL4 GLA ENST00000480725.1 4828 102973502 102983552 − seg_395 102982800 102984450 GLRA4 TBG = SERPINA7 ENST00000372617.4 4829 102962152 102983552 − seg_395 102982800 102984450 GLRA4 TBG = SERPINA7 ENST00000436213.1 4830 102962228 102983583 − seg_395 102982800 102984450 GLRA4 TBG = SERPINA7 ENST00000243298.2 4831 103077252 103087158 − seg_396 103086000 103088000 RAB9B TBG = SERPINA7 ENST00000447281.1 4832 103172005 103174131 − seg_397 103172500 103174100 TMSB15B TBG = SERPINA7 ENST00000455723.1 4833 103173770 103187485 + seg_397 103172500 103174100 TMSB15B TBG = SERPINA7 ENST00000419165.1 4834 103173479 103220554 + seg_397 103172500 103174100 TMSB15B TBG = SERPINA7 ENST00000540220.1 4835 103217224 103220868 + seg_398 103216950 103218150 TMSB15B TBG = SERPINA7 ENST00000436583.1 4836 103217242 103220554 + seg_398 103216950 103218150 TMSB15B TBG = SERPINA7 ENST00000419165.1 4837 103173479 103220554 + seg_398 103216950 103218150 TMSB15B TBG = SERPINA7 ENST00000423478.1 4838 103356822 103357563 + seg_402 103355950 103358450 SLC25A53 TBG = SERPINA7 ENST00000422784.1 4839 103357235 103360533 + seg_402 103355950 103358450 SLC25A53 TBG = SERPINA7 ENST00000537356.1 4840 103357107 103360531 + seg_402 103355950 103358450 SLC25A53 TBG = SERPINA7 ENST00000357421.4 4841 103343898 103401708 − seg_402 103355950 103358450 SLC25A53 TBG = SERPINA7 ENST00000243300.9 4842 105066536 105202602 + seg_405 105065050 105067850 NRK TBG = SERPINA7 ENST00000536164.1 4843 105066574 105139308 + seg_405 105065050 105067850 NRK TBG = SERPINA7 ENST00000428173.2 4844 105066536 105202601 + seg_405 105065050 105067850 NRK TBG = SERPINA7 ENST00000418562.1 4845 105937024 106033435 + seg_406 105960300 105961850 RNF128 TBG = SERPINA7 ENST00000324342.3 4846 105937068 106040223 + seg_406 105960300 105961850 RNF128 TBG = SERPINA7 ENST00000357242.5 4847 106045910 106119375 + seg_407 106047050 106048050 TBC1D8B TBG = SERPINA7 ENST00000481617.2 4848 106045935 106073313 + seg_407 106047050 106048050 TBC1D8B TBG = SERPINA7 ENST00000276175.3 4849 106046043 106117347 + seg_407 106047050 106048050 TBC1D8B TBG = SERPINA7 ENST00000310452.2 4850 106045919 106093061 + seg_407 106047050 106048050 TBC1D8B TBG = SERPINA7 ENST00000540876.1 4851 106161590 106174089 + seg_408 106172400 106173500 CLDN2 PRPS1 ENST00000541806.1 4852 106143394 106174089 + seg_408 106172400 106173500 CLDN2 PRPS1 ENST00000358740.3 4853 106057103 106236570 − seg_408 106172400 106173500 CLDN2 PRPS1 ENST00000336803.1 4854 106163634 106174091 + seg_408 106172400 106173500 CLDN2 PRPS1 ENST00000415252.1 4855 106756213 106789051 − seg_411 106766900 106768200 FRMPD3 PRPS1 ENST00000276185.4 4856 106765680 106846603 + seg_411 106766900 106768200 FRMPD3 PRPS1 ENST00000477796.1 4857 106787813 106798427 + seg_412 106793100 106794250 FRMPD3 PRPS1 ENST00000276185.4 4858 106765680 106846603 + seg_412 106793100 106794250 FRMPD3 PRPS1 ENST00000439554.1 4859 106769876 106848481 + seg_412 106793100 106794250 FRMPD3 PRPS1 ENST00000276185.4 4860 106765680 106846603 + seg_413 106843800 106846550 PRPS1 PRPS1 ENST00000439554.1 4861 106769876 106848481 + seg_413 106843800 106846550 PRPS1 PRPS1 ENST00000372384.2 4862 106956454 107019218 − seg_414 106991800 106993500 TSC22D3 PRPS1 ENST00000372383.4 4863 106956454 107019017 − seg_414 106991800 106993500 TSC22D3 PRPS1 ENST00000394928.2 4864 106957214 107018890 − seg_414 106991800 106993500 TSC22D3 PRPS1 ENST00000315660.4 4865 106956451 107019215 − seg_414 106991800 106993500 TSC22D3 PRPS1 ENST00000506081.1 4866 106957600 107020297 − seg_414 106991800 106993500 TSC22D3 PRPS1 ENST00000514426.1 4867 106957717 107020308 − seg_414 106991800 106993500 TSC22D3 PRPS1 ENST00000510887.1 4868 106959142 107019944 − seg_414 106991800 106993500 TSC22D3 PRPS1 ENST00000502650.1 4869 106959153 107019345 − seg_414 106991800 106993500 TSC22D3 PRPS1 ENST00000514897.1 4870 106959128 107020572 − seg_414 106991800 106993500 TSC22D3 PRPS1 ENST00000480691.2 4871 106959133 107020285 − seg_414 106991800 106993500 TSC22D3 PRPS1 ENST00000506724.1 4872 107018348 107019488 − seg_415 107018250 107019350 TSC22D3 PRPS1 ENST00000372384.2 4873 106956454 107019218 − seg_415 107018250 107019350 TSC22D3 PRPS1 ENST00000505965.1 4874 107018397 107020567 − seg_415 107018250 107019350 TSC22D3 PRPS1 ENST00000372383.4 4875 106956454 107019017 − seg_415 107018250 107019350 TSC22D3 PRPS1 ENST00000394928.2 4876 106957214 107018890 − seg_415 107018250 107019350 TSC22D3 PRPS1 ENST00000315660.4 4877 106956451 107019215 − seg_415 107018250 107019350 TSC22D3 PRPS1 ENST00000506081.1 4878 106957600 107020297 − seg_415 107018250 107019350 TSC22D3 PRPS1 ENST00000514426.1 4879 106957717 107020308 − seg_415 107018250 107019350 TSC22D3 PRPS1 ENST00000502961.1 4880 107018476 107020559 − seg_415 107018250 107019350 TSC22D3 PRPS1 ENST00000510887.1 4881 106959142 107019944 − seg_415 107018250 107019350 TSC22D3 PRPS1 ENST00000502650.1 4882 106959153 107019345 − seg_415 107018250 107019350 TSC22D3 PRPS1 ENST00000514897.1 4883 106959128 107020572 − seg_415 107018250 107019350 TSC22D3 PRPS1 ENST00000480691.2 4884 106959133 107020285 − seg_415 107018250 107019350 TSC22D3 PRPS1 ENST00000451923.1 4885 107068985 107084611 + seg_416 107067850 107070850 MID2 PRPS1 ENST00000443968.2 4886 107069644 107170423 + seg_416 107067850 107070850 MID2 PRPS1 ENST00000262843.6 4887 107069109 107170423 + seg_416 107067850 107070850 MID2 PRPS1 ENST00000302917.1 4888 107224094 107225600 − seg_417 107223950 107225250 TEX13B PRPS1 ENST00000545689.1 4889 107399275 107681556 − seg_418 107509250 107510600 COL4A6 COL4A5 ENST00000538570.1 4890 107399275 107681556 − seg_418 107509250 107510600 COL4A6 COL4A5 ENST00000394872.2 4891 107398838 107681658 − seg_418 107509250 107510600 COL4A6 COL4A5 ENST00000468338.1 4892 107457022 107682702 − seg_418 107509250 107510600 COL4A6 COL4A5 ENST00000541389.1 4893 107399121 107681660 − seg_418 107509250 107510600 COL4A6 COL4A5 ENST00000334504.7 4894 107398837 107681660 − seg_418 107509250 107510600 COL4A6 COL4A5 ENST00000372216.4 4895 107398837 107682702 − seg_418 107509250 107510600 COL4A6 COL4A5 ENST00000545689.1 4896 107399275 107681556 − seg_419 107621250 107622550 COL4A6 COL4A5 ENST00000538570.1 4897 107399275 107681556 − seg_419 107621250 107622550 COL4A6 COL4A5 ENST00000394872.2 4898 107398838 107681658 − seg_419 107621250 107622550 COL4A6 COL4A5 ENST00000461897.1 4899 107510872 107681660 − seg_419 107621250 107622550 COL4A6 COL4A5 ENST00000468338.1 4900 107457022 107682702 − seg_419 107621250 107622550 COL4A6 COL4A5 ENST00000541389.1 4901 107399121 107681660 − seg_419 107621250 107622550 COL4A6 COL4A5 ENST00000334504.7 4902 107398837 107681660 − seg_419 107621250 107622550 COL4A6 COL4A5 ENST00000372216.4 4903 107398837 107682702 − seg_419 107621250 107622550 COL4A6 COL4A5 ENST00000477085.1 4904 107510872 107682727 − seg_419 107621250 107622550 COL4A6 COL4A5 ENST00000372129.2 4905 107975712 107979651 − seg_421 107975000 107976700 RP6-24A23.6 COL4A5 ENST00000419932.1 4906 108297361 108297792 − seg_423 108296850 108298000 IRS4 COL4A5 ENST00000516235.1 4907 108297553 108297626 + seg_423 108296850 108298000 IRS4 COL4A5 ENST00000218006.2 4908 108616135 108725301 − seg_424 108674800 108676200 GUCY2F COL4A5 ENST00000218006.2 4909 108616135 108725301 − seg_425 108703300 108705200 GUCY2F COL4A5 ENST00000440201.1 4910 108811707 108813521 + seg_427 108811600 108812750 NXT2 COL4A5 ENST00000471255.1 4911 109245915 109310624 + seg_430 109247900 109249000 TMEM164 COL4A5 ENST00000288381.4 4912 109246343 109421016 + seg_430 109247900 109249000 TMEM164 COL4A5 ENST00000372073.1 4913 109246323 109421016 + seg_430 109247900 109249000 TMEM164 COL4A5 ENST00000372068.2 4914 109246342 109421012 + seg_430 109247900 109249000 TMEM164 COL4A5 ENST00000501872.2 4915 109246343 109420900 + seg_430 109247900 109249000 TMEM164 COL4A5 ENST00000372072.3 4916 109245863 109421012 + seg_430 109247900 109249000 TMEM164 COL4A5 ENST00000520821.1 4917 109602044 109694109 + seg_431 109686900 109688500 RGAG1 COL4A5 ENST00000465301.2 4918 109662285 109699562 + seg_431 109686900 109688500 RGAG1 COL4A5 ENST00000218054.4 4919 109917092 110039076 − seg_432 110038450 110040100 CHRDL1 COL4A5 ENST00000394797.4 4920 109918473 110038993 − seg_432 110038450 110040100 CHRDL1 COL4A5 ENST00000434224.1 4921 109917092 110039286 − seg_432 110038450 110040100 CHRDL1 COL4A5 ENST00000372045.1 4922 109917084 110038993 − seg_432 110038450 110040100 CHRDL1 COL4A5 ENST00000482160.1 4923 109919169 110039047 − seg_432 110038450 110040100 CHRDL1 COL4A5 ENST00000372042.1 4924 109919004 110039039 − seg_432 110038450 110040100 CHRDL1 COL4A5 ENST00000444321.2 4925 109919285 110039047 − seg_432 110038450 110040100 CHRDL1 COL4A5 ENST00000262839.2 4926 111017543 111326004 − seg_433 111148500 111149550 TRPC5 COL4A5 ENST00000262839.2 4927 111017543 111326004 − seg_434 111323950 111326100 TRPC5 COL4A5 ENST00000371968.3 4928 111873876 111923282 − seg_436 111877350 111878350 LHFPL1 COL4A5 ENST00000536453.1 4929 111873879 111923375 − seg_436 111877350 111878350 LHFPL1 COL4A5 ENST00000478229.1 4930 111874502 111923282 − seg_436 111877350 111878350 LHFPL1 COL4A5 ENST00000462114.1 4931 112066365 112083911 − seg_437 112067850 112068950 AMOT COL4A5 ENST00000524145.1 4932 112021795 112068356 − seg_437 112067850 112068950 AMOT COL4A5 ENST00000304758.1 4933 112017731 112084043 − seg_437 112067850 112068950 AMOT COL4A5 ENST00000371951.1 4934 113818551 114143070 + seg_439 113815000 113819700 HTR2C COL4A5 ENST00000371950.3 4935 113818555 114144624 + seg_439 113815000 113819700 HTR2C COL4A5 ENST00000276198.1 4936 113818551 114144624 + seg_439 113815000 113819700 HTR2C COL4A5 ENST00000543279.1 4937 114752497 114797058 − seg_440 114795000 114796050 PLS3 COL4A5 ENST00000441988.2 4938 114795501 114883831 + seg_440 114795000 114796050 PLS3 COL4A5 ENST00000289290.3 4939 114795582 114884078 + seg_440 114795000 114796050 PLS3 COL4A5 ENST00000537301.1 4940 114795555 114884078 + seg_440 114795000 114796050 PLS3 COL4A5 ENST00000489283.1 4941 114795501 114864228 + seg_440 114795000 114796050 PLS3 COL4A5 ENST00000355899.3 4942 114795509 114885177 + seg_440 114795000 114796050 PLS3 COL4A5 ENST00000451869.1 4943 114957297 114959381 + seg_442 114957400 114958700 RP1- COL4A5 241P17.4 ENST00000415394.1 4944 114957343 114959383 + seg_442 114957400 114958700 RP1- COL4A5 241P17.4 ENST00000436163.1 4945 117250225 117250763 − seg_444 117249550 117251250 KLHL13 COL4A5 ENST00000371882.1 4946 117031776 117250761 − seg_444 117249550 117251250 KLHL13 COL4A5 ENST00000540167.1 4947 117031777 117250828 − seg_444 117249550 117251250 KLHL13 COL4A5 ENST00000541812.1 4948 117031777 117251303 − seg_444 117249550 117251250 KLHL13 COL4A5 ENST00000545703.1 4949 117031777 117250828 − seg_444 117249550 117251250 KLHL13 COL4A5 ENST00000310164.2 4950 117957753 117960931 + seg_446 117956850 117960550 ZCCHC12 COL4A5 ENST00000481285.1 4951 118108581 118151946 + seg_447 118109900 118111100 LONRF3 COL4A5 ENST00000304778.7 4952 118108581 118152318 + seg_447 118109900 118111100 LONRF3 COL4A5 ENST00000439603.1 4953 118109325 118151950 + seg_447 118109900 118111100 LONRF3 COL4A5 ENST00000371628.3 4954 118108713 118151892 + seg_447 118109900 118111100 LONRF3 COL4A5 ENST00000422289.2 4955 118110295 118151947 + seg_447 118109900 118111100 LONRF3 COL4A5 ENST00000472173.1 4956 118110295 118151946 + seg_447 118109900 118111100 LONRF3 COL4A5 ENST00000365713.2 4957 118108581 118156888 + seg_447 118109900 118111100 LONRF3 COL4A5 ENST00000440399.1 4958 118212598 118223411 − seg_449 118214300 118215550 KIAA1210 OCRL ENST00000402510.2 4959 118212598 118284542 − seg_449 118214300 118215550 KIAA1210 OCRL ENST00000420240.1 4960 118227676 118250616 − seg_450 118240400 118241500 KIAA1210 OCRL ENST00000402510.2 4961 118212598 118284542 − seg_450 118240400 118241500 KIAA1210 OCRL ENST00000402510.2 4962 118212598 118284542 − seg_451 118283750 118285900 KIAA1210 OCRL ENST00000488158.1 4963 118533343 118588435 + seg_453 118532900 118534700 SLC25A43 OCRL ENST00000217909.7 4964 118533023 118588441 + seg_453 118532900 118534700 SLC25A43 OCRL ENST00000326714.7 4965 118533367 118588431 + seg_453 118532900 118534700 SLC25A43 OCRL ENST00000495750.1 4966 118533463 118586860 + seg_453 118532900 118534700 SLC25A43 OCRL ENST00000336249.7 4967 118533343 118587183 + seg_453 118532900 118534700 SLC25A43 OCRL ENST00000493093.1 4968 118533372 118587145 + seg_453 118532900 118534700 SLC25A43 OCRL ENST00000488158.1 4969 118533343 118588435 + seg_454 118552150 118553350 SLC25A43 OCRL ENST00000217909.7 4970 118533023 118588441 + seg_454 118552150 118553350 SLC25A43 OCRL ENST00000326714.7 4971 118533367 118588431 + seg_454 118552150 118553350 SLC25A43 OCRL ENST00000495750.1 4972 118533463 118586860 + seg_454 118552150 118553350 SLC25A43 OCRL ENST00000484058.1 4973 118540519 118586904 + seg_454 118552150 118553350 SLC25A43 OCRL ENST00000336249.7 4974 118533343 118587183 + seg_454 118552150 118553350 SLC25A43 OCRL ENST00000493093.1 4975 118533372 118587145 + seg_454 118552150 118553350 SLC25A43 OCRL ENST00000454625.1 4976 119144675 119149501 − seg_460 119147300 119149300 RHOXF2B OCRL ENST00000480821.1 4977 119443748 119445257 − seg_462 119443650 119445500 TMEM255A OCRL ENST00000309720.5 4978 119392505 119445288 − seg_462 119443650 119445500 TMEM255A OCRL ENST00000440464.1 4979 119392506 119445391 − seg_462 119443650 119445500 TMEM255A OCRL ENST00000371369.4 4980 119392505 119445391 − seg_462 119443650 119445500 TMEM255A OCRL ENST00000519908.1 4981 119402218 119445411 − seg_462 119443650 119445500 TMEM255A OCRL ENST00000218008.3 4982 119495967 119516226 + seg_463 119503950 119505200 ATP1B4 OCRL ENST00000539306.1 4983 119495997 119513514 + seg_463 119503950 119505200 ATP1B4 OCRL ENST00000361319.3 4984 119495967 119516226 + seg_463 119503950 119505200 ATP1B4 OCRL ENST00000371311.3 4985 120006457 120009779 − seg_465 120007900 120009150 CT47B1 OCRL ENST00000479118.1 4986 122318412 122387553 + seg_471 122317650 122321300 GRIA3 OCRL ENST00000371264.3 4987 122318152 122338534 + seg_471 122317650 122321300 GRIA3 OCRL ENST00000371266.1 4988 122318006 122338534 + seg_471 122317650 122321300 GRIA3 OCRL ENST00000335161.8 4989 122318224 122338270 + seg_471 122317650 122321300 GRIA3 OCRL ENST00000541091.1 4990 122318765 122551942 + seg_471 122317650 122321300 GRIA3 OCRL ENST00000371251.1 4991 122318336 122616897 + seg_471 122317650 122321300 GRIA3 OCRL ENST00000264357.5 4992 122318096 122624756 + seg_471 122317650 122321300 GRIA3 OCRL ENST00000371256.5 4993 122318336 122624766 + seg_471 122317650 122321300 GRIA3 OCRL ENST00000542149.1 4994 122318224 122622587 + seg_471 122317650 122321300 GRIA3 OCRL ENST00000479118.1 4995 122318412 122387553 + seg_472 122323700 122324850 GRIA3 OCRL ENST00000371264.3 4996 122318152 122338534 + seg_472 122323700 122324850 GRIA3 OCRL ENST00000371266.1 4997 122318006 122338534 + seg_472 122323700 122324850 GRIA3 OCRL ENST00000335161.8 4998 122318224 122338270 + seg_472 122323700 122324850 GRIA3 OCRL ENST00000541091.1 4999 122318765 122551942 + seg_472 122323700 122324850 GRIA3 OCRL ENST00000371251.1 5000 122318336 122616897 + seg_472 122323700 122324850 GRIA3 OCRL ENST00000264357.5 5001 122318096 122624756 + seg_472 122323700 122324850 GRIA3 OCRL ENST00000371256.5 5002 122318336 122624766 + seg_472 122323700 122324850 GRIA3 OCRL ENST00000542149.1 5003 122318224 122622587 + seg_472 122323700 122324850 GRIA3 OCRL ENST00000429967.1 5004 128779786 128788914 − seg_479 128781850 128783650 APLN OCRL ENST00000427399.1 5005 128781653 128782742 − seg_479 128781850 128783650 APLN OCRL ENST00000307484.6 5006 128779240 128788933 − seg_479 128781850 128783650 APLN OCRL ENST00000429967.1 5007 128779786 128788914 − seg_480 128787750 128789650 APLN OCRL ENST00000307484.6 5008 128779240 128788933 − seg_480 128787750 128789650 APLN OCRL ENST00000371106.3 5009 128872998 128903514 + seg_484 128882700 128883950 XPNPEP2 OCRL ENST00000276218.2 5010 129518319 129519511 − seg_487 129517950 129519000 GPR119 OCRL ENST00000458525.1 5011 129611043 129658231 − seg_489 129617200 129618900 RBMX2 OCRL ENST00000412420.1 5012 130150443 130192120 − seg_491 130182550 130183750 ARHGAP36 NYS1 = FRMD7 ENST00000423277.1 5013 130206962 130218649 + seg_492 130211050 130212100 ARHGAP36 NYS1 = FRMD7 ENST00000370922.1 5014 130192331 130223857 + seg_492 130211050 130212100 ARHGAP36 NYS1 = FRMD7 ENST00000276211.5 5015 130192216 130223853 + seg_492 130211050 130212100 ARHGAP36 NYS1 = FRMD7 ENST00000423277.1 5016 130206962 130218649 + seg_493 130215900 130218550 ARHGAP36 NYS1 = FRMD7 ENST00000412432.2 5017 130212691 130223857 + seg_493 130215900 130218550 ARHGAP36 NYS1 = FRMD7 ENST00000370921.1 5018 130217684 130223857 + seg_493 130215900 130218550 ARHGAP36 NYS1 = FRMD7 ENST00000370922.1 5019 130192331 130223857 + seg_493 130215900 130218550 ARHGAP36 NYS1 = FRMD7 ENST00000276211.5 5020 130192216 130223853 + seg_493 130215900 130218550 ARHGAP36 NYS1 = FRMD7 ENST00000467244.1 5021 130409953 130411491 − seg_494 130409100 130410150 IGSF1 NYS1 = FRMD7 ENST00000370910.1 5022 130407480 130423252 − seg_494 130409100 130410150 IGSF1 NYS1 = FRMD7 ENST00000370903.3 5023 130407485 130423403 − seg_494 130409100 130410150 IGSF1 NYS1 = FRMD7 ENST00000361420.3 5024 130407483 130423200 − seg_494 130409100 130410150 IGSF1 NYS1 = FRMD7 ENST00000370904.1 5025 130407485 130533677 − seg_494 130409100 130410150 IGSF1 NYS1 = FRMD7 ENST00000490400.1 5026 131351694 131353471 − seg_496 131351450 131352650 RAP2C NYS1 = FRMD7 ENST00000370874.1 5027 131338678 131353461 − seg_496 131351450 131352650 RAP2C NYS1 = FRMD7 ENST00000342983.2 5028 131337053 131352152 − seg_496 131351450 131352650 RAP2C NYS1 = FRMD7 ENST00000460462.1 5029 131339477 131352360 − seg_496 131351450 131352650 RAP2C NYS1 = FRMD7 ENST00000421483.1 5030 131351175 131564190 + seg_496 131351450 131352650 RAP2C NYS1 = FRMD7 ENST00000441399.1 5031 131352535 131566890 + seg_496 131351450 131352650 RAP2C NYS1 = FRMD7 ENST00000370853.3 5032 131512177 131573718 − seg_497 131556050 131558450 MBNL3 NYS1 = FRMD7 ENST00000370857.3 5033 131506029 131573705 − seg_497 131556050 131558450 MBNL3 NYS1 = FRMD7 ENST00000370839.3 5034 131513232 131573718 − seg_497 131556050 131558450 MBNL3 NYS1 = FRMD7 ENST00000370844.1 5035 131513232 131623996 − seg_497 131556050 131558450 MBNL3 NYS1 = FRMD7 ENST00000421707.1 5036 131518691 131623043 − seg_497 131556050 131558450 MBNL3 NYS1 = FRMD7 ENST00000421483.1 5037 131351175 131564190 + seg_497 131556050 131558450 MBNL3 NYS1 = FRMD7 ENST00000436215.1 5038 131516244 131623894 − seg_497 131556050 131558450 MBNL3 NYS1 = FRMD7 ENST00000441399.1 5039 131352535 131566890 + seg_497 131556050 131558450 MBNL3 NYS1 = FRMD7 ENST00000370836.2 5040 131760044 132095423 − seg_499 132008150 132009150 HS6ST2 NYS1 = FRMD7 ENST00000370833.2 5041 131762251 132091344 − seg_499 132008150 132009150 HS6ST2 NYS1 = FRMD7 ENST00000461959.1 5042 131760044 132091354 − seg_499 132008150 132009150 HS6ST2 NYS1 = FRMD7 ENST00000319809.6 5043 131762877 132091305 − seg_499 132008150 132009150 HS6ST2 NYS1 = FRMD7 ENST00000521489.1 5044 131761998 132095423 − seg_499 132008150 132009150 HS6ST2 NYS1 = FRMD7 ENST00000370837.1 5045 131760038 132091358 − seg_499 132008150 132009150 HS6ST2 NYS1 = FRMD7 ENST00000370836.2 5046 131760044 132095423 − seg_500 132086850 132088300 HS6ST2 NYS1 = FRMD7 ENST00000370833.2 5047 131762251 132091344 − seg_500 132086850 132088300 HS6ST2 NYS1 = FRMD7 ENST00000461959.1 5048 131760044 132091354 − seg_500 132086850 132088300 HS6ST2 NYS1 = FRMD7 ENST00000319809.6 5049 131762877 132091305 − seg_500 132086850 132088300 HS6ST2 NYS1 = FRMD7 ENST00000521489.1 5050 131761998 132095423 − seg_500 132086850 132088300 HS6ST2 NYS1 = FRMD7 ENST00000370837.1 5051 131760038 132091358 − seg_500 132086850 132088300 HS6ST2 NYS1 = FRMD7 ENST00000517294.1 5052 133371077 133380237 + seg_502 133370100 133372850 CCDC160 HPRT1 = HPRT ENST00000370809.4 5053 133371077 133379808 + seg_502 133370100 133372850 CCDC160 HPRT1 = HPRT ENST00000434384.1 5054 133684003 133693953 + seg_504 133682650 133684050 PLAC1 HPRT1 = HPRT ENST00000441416.1 5055 134314179 134328610 − seg_510 134314000 134315000 CXorf48 HPRT1 = HPRT ENST00000445718.1 5056 134335662 134349163 + seg_511 134346900 134347900 CXorf48 HPRT1 = HPRT ENST00000445718.1 5057 134335662 134349163 + seg_512 134349000 134350350 CXorf48 HPRT1 = HPRT ENST00000442950.1 5058 134370740 134371295 + seg_515 134370750 134373750 ZNF75D HPRT1 = HPRT ENST00000339249.4 5059 134478721 134497077 + seg_516 134478200 134479400 ZNF449 HPRT1 = HPRT ENST00000370761.3 5060 134478721 134482954 + seg_516 134478200 134479400 ZNF449 HPRT1 = HPRT ENST00000370760.3 5061 134478721 134482708 + seg_516 134478200 134479400 ZNF449 HPRT1 = HPRT ENST00000417443.1 5062 134555868 134559682 + seg_518 134555850 134556850 ZNF449 HPRT1 = HPRT ENST00000426910.1 5063 134566885 134572559 + seg_519 134566100 134571950 DDX26B HPRT1 = HPRT ENST00000471213.1 5064 134866214 134875839 + seg_523 134871500 134872550 CT45A2 HPRT1 = HPRT ENST00000370736.3 5065 134866214 134874250 + seg_523 134871500 134872550 CT45A2 HPRT1 = HPRT ENST00000495729.1 5066 134866399 134874235 + seg_523 134871500 134872550 CT45A2 HPRT1 = HPRT ENST00000370734.3 5067 134883488 134891521 + seg_524 134888100 134889150 CT45A3 HPRT1 = HPRT ENST00000461216.1 5068 134883673 134891482 + seg_524 134888100 134889150 CT45A3 HPRT1 = HPRT ENST00000485366.1 5069 134883488 134893393 + seg_524 134888100 134889150 CT45A3 HPRT1 = HPRT ENST00000443882.1 5070 134887233 134891519 + seg_524 134888100 134889150 CT45A3 HPRT1 = HPRT ENST00000487941.1 5071 134926788 134936735 − seg_525 134931900 134933650 CT45A4 HPRT1 = HPRT ENST00000494421.1 5072 134928706 134936550 − seg_525 134931900 134933650 CT45A4 HPRT1 = HPRT ENST00000434966.2 5073 134928695 134936735 − seg_525 134931900 134933650 CT45A4 HPRT1 = HPRT ENST00000420087.2 5074 134928697 134953994 − seg_525 134931900 134933650 CT45A4 HPRT1 = HPRT ENST00000463085.1 5075 134944381 134953994 − seg_526 134947700 134950650 CT45A4 HPRT1 = HPRT ENST00000370724.3 5076 134945962 134953994 − seg_526 134947700 134950650 CT45A4 HPRT1 = HPRT ENST00000491480.1 5077 134945973 134953809 − seg_526 134947700 134950650 CT45A4 HPRT1 = HPRT ENST00000420087.2 5078 134928697 134953994 − seg_526 134947700 134950650 CT45A4 HPRT1 = HPRT ENST00000536581.1 5079 135229692 135292637 + seg_532 135228300 135230300 FHL1 HPRT1 = HPRT ENST00000420362.1 5080 135229825 135290725 + seg_532 135228300 135230300 FHL1 HPRT1 = HPRT ENST00000370690.3 5081 135229624 135293518 + seg_532 135228300 135230300 FHL1 HPRT1 = HPRT ENST00000394155.2 5082 135229559 135293518 + seg_532 135228300 135230300 FHL1 HPRT1 = HPRT ENST00000458357.1 5083 135230270 135290084 + seg_532 135228300 135230300 FHL1 HPRT1 = HPRT ENST00000536581.1 5084 135229692 135292637 + seg_533 135233600 135234900 FHL1 HPRT1 = HPRT ENST00000420362.1 5085 135229825 135290725 + seg_533 135233600 135234900 FHL1 HPRT1 = HPRT ENST00000370690.3 5086 135229624 135293518 + seg_533 135233600 135234900 FHL1 HPRT1 = HPRT ENST00000535737.1 5087 135230737 135293518 + seg_533 135233600 135234900 FHL1 HPRT1 = HPRT ENST00000394155.2 5088 135229559 135293518 + seg_533 135233600 135234900 FHL1 HPRT1 = HPRT ENST00000458357.1 5089 135230270 135290084 + seg_533 135233600 135234900 FHL1 HPRT1 = HPRT ENST00000536581.1 5090 135229692 135292637 + seg_534 135250050 135251600 FHL1 HPRT1 = HPRT ENST00000434885.1 5091 135250353 135290734 + seg_534 135250050 135251600 FHL1 HPRT1 = HPRT ENST00000543669.1 5092 135251455 135293518 + seg_534 135250050 135251600 FHL1 HPRT1 = HPRT ENST00000420362.1 5093 135229825 135290725 + seg_534 135250050 135251600 FHL1 HPRT1 = HPRT ENST00000452016.1 5094 135249163 135290734 + seg_534 135250050 135251600 FHL1 HPRT1 = HPRT ENST00000370690.3 5095 135229624 135293518 + seg_534 135250050 135251600 FHL1 HPRT1 = HPRT ENST00000535737.1 5096 135230737 135293518 + seg_534 135250050 135251600 FHL1 HPRT1 = HPRT ENST00000394155.2 5097 135229559 135293518 + seg_534 135250050 135251600 FHL1 HPRT1 = HPRT ENST00000458357.1 5098 135230270 135290084 + seg_534 135250050 135251600 FHL1 HPRT1 = HPRT ENST00000394141.1 5099 135388180 135498843 + seg_535 135436600 135438050 GPR112 HPRT1 = HPRT ENST00000287534.4 5100 135387012 135519215 + seg_535 135436600 135438050 GPR112 HPRT1 = HPRT ENST00000394143.1 5101 135383122 135499047 + seg_535 135436600 135438050 GPR112 HPRT1 = HPRT ENST00000412101.1 5102 135387012 135499047 + seg_535 135436600 135438050 GPR112 HPRT1 = HPRT ENST00000370652.1 5103 135387012 135499047 + seg_535 135436600 135438050 GPR112 HPRT1 = HPRT ENST00000370648.3 5104 135570046 135575939 + seg_536 135572450 135573650 BRS3 HPRT1 = HPRT ENST00000470358.1 5105 135632601 135638966 + seg_537 135634450 135636250 VGLL1 HPRT1 = HPRT ENST00000440515.1 5106 135618287 135638655 + seg_537 135634450 135636250 VGLL1 HPRT1 = HPRT ENST00000370634.3 5107 135614311 135638966 + seg_537 135634450 135636250 VGLL1 HPRT1 = HPRT ENST00000456412.1 5108 135618354 135638966 + seg_537 135634450 135636250 VGLL1 HPRT1 = HPRT ENST00000430688.2 5109 135614311 135638965 + seg_537 135634450 135636250 VGLL1 HPRT1 = HPRT ENST00000370628.2 5110 135730386 135742549 + seg_538 135736550 135737900 CD40LG HPRT1 = HPRT ENST00000370629.2 5111 135730352 135742549 + seg_538 135736550 135737900 CD40LG HPRT1 = HPRT ENST00000370628.2 5112 135730386 135742549 + seg_539 135741150 135742750 CD40LG HPRT1 = HPRT ENST00000370629.2 5113 135730352 135742549 + seg_539 135741150 135742750 CD40LG HPRT1 = HPRT ENST00000287538.5 5114 136648301 136653744 + seg_546 136650850 136652450 ZIC3 F9 ENST00000478471.1 5115 136650964 136652154 + seg_546 136650850 136652450 ZIC3 F9 ENST00000370606.3 5116 136648677 136659850 + seg_546 136650850 136652450 ZIC3 F9 ENST00000483690.1 5117 138689343 138697109 − seg_550 138689350 138690400 MCF2 F9 ENST00000519895.1 5118 138664456 138790386 − seg_550 138689350 138690400 MCF2 F9 ENST00000446225.1 5119 138664301 138697211 − seg_550 138689350 138690400 MCF2 F9 ENST00000520602.1 5120 138663929 138774315 − seg_550 138689350 138690400 MCF2 F9 ENST00000536274.1 5121 138663930 138725000 − seg_550 138689350 138690400 MCF2 F9 ENST00000370573.4 5122 138664602 138724677 − seg_550 138689350 138690400 MCF2 F9 ENST00000370576.4 5123 138663930 138724887 − seg_550 138689350 138690400 MCF2 F9 ENST00000370578.4 5124 138663930 138774284 − seg_550 138689350 138690400 MCF2 F9 ENST00000338585.6 5125 138664630 138724677 − seg_550 138689350 138690400 MCF2 F9 ENST00000414978.1 5126 138663930 138790375 − seg_550 138689350 138690400 MCF2 F9 ENST00000519895.1 5127 138664456 138790386 − seg_551 138772800 138775400 MCF2 F9 ENST00000520602.1 5128 138663929 138774315 − seg_551 138772800 138775400 MCF2 F9 ENST00000370578.4 5129 138663930 138774284 − seg_551 138772800 138775400 MCF2 F9 ENST00000414978.1 5130 138663930 138790375 − seg_551 138772800 138775400 MCF2 F9 ENST00000485626.1 5131 138884461 139027435 − seg_552 139015500 139016750 ATP11C F9 ENST00000453380.1 5132 139173902 139174720 + seg_553 139172400 139174100 CXorf66 F9 ENST00000370536.2 5133 139585152 139587225 − seg_555 139584250 139586100 SOX3 F9 ENST00000370530.1 5134 140096761 140097876 + seg_557 140096200 140097500 SPANXB1 F9 ENST00000370467.3 5135 147062849 147108187 + seg_560 147095200 147096350 FMR1NB FMR1 ENST00000489034.1 5136 147088336 147108185 + seg_560 147095200 147096350 FMR1NB FMR1 ENST00000435346.1 5137 147628399 147628918 + seg_561 147627750 147628750 AFF2 FMR1 ENST00000370457.5 5138 147582139 148082193 + seg_561 147627750 147628750 AFF2 FMR1 ENST00000370460.2 5139 147582139 148082193 + seg_561 147627750 147628750 AFF2 FMR1 ENST00000370458.1 5140 147582529 147985907 + seg_561 147627750 147628750 AFF2 FMR1 ENST00000342251.3 5141 147582228 148075954 + seg_561 147627750 147628750 AFF2 FMR1 ENST00000370457.5 5142 147582139 148082193 + seg_562 147670600 147671600 AFF2 FMR1 ENST00000370460.2 5143 147582139 148082193 + seg_562 147670600 147671600 AFF2 FMR1 ENST00000370458.1 5144 147582529 147985907 + seg_562 147670600 147671600 AFF2 FMR1 ENST00000342251.3 5145 147582228 148075954 + seg_562 147670600 147671600 AFF2 FMR1 ENST00000543618.1 5146 148678217 148683886 − seg_567 148673650 148678650 HSFX2 MTM1 ENST00000522155.1 5147 148674868 148676436 − seg_567 148673650 148678650 HSFX2 MTM1 ENST00000524178.1 5148 148674172 148676974 − seg_567 148673650 148678650 HSFX2 MTM1 ENST00000519015.1 5149 148678217 148683886 − seg_567 148673650 148678650 HSFX2 MTM1 ENST00000316916.8 5150 148678216 148713568 − seg_567 148673650 148678650 HSFX2 MTM1 ENST00000536359.1 5151 148678216 148713487 − seg_567 148673650 148678650 HSFX2 MTM1 ENST00000513505.2 5152 148678216 148713402 − seg_567 148673650 148678650 HSFX2 MTM1 ENST00000543618.1 5153 148678217 148683886 − seg_568 148679900 148684000 HSFX2 MTM1 ENST00000519015.1 5154 148678217 148683886 − seg_568 148679900 148684000 HSFX2 MTM1 ENST00000316916.8 5155 148678216 148713568 − seg_568 148679900 148684000 HSFX2 MTM1 ENST00000502858.2 5156 148679625 148690438 − seg_568 148679900 148684000 HSFX2 MTM1 ENST00000536359.1 5157 148678216 148713487 − seg_568 148679900 148684000 HSFX2 MTM1 ENST00000513505.2 5158 148678216 148713402 − seg_568 148679900 148684000 HSFX2 MTM1 ENST00000502618.1 5159 148681969 148693146 − seg_568 148679900 148684000 HSFX2 MTM1 ENST00000316916.8 5160 148678216 148713568 − seg_569 148712800 148714250 TMEM185A MTM1 ENST00000502900.1 5161 148686838 148713403 − seg_569 148712800 148714250 TMEM185A MTM1 ENST00000536359.1 5162 148678216 148713487 − seg_569 148712800 148714250 TMEM185A MTM1 ENST00000511776.1 5163 148690379 148713365 − seg_569 148712800 148714250 TMEM185A MTM1 ENST00000513505.2 5164 148678216 148713402 − seg_569 148712800 148714250 TMEM185A MTM1 ENST00000507237.1 5165 148685375 148713381 − seg_569 148712800 148714250 TMEM185A MTM1 ENST00000428022.1 5166 148848815 148854483 + seg_573 148848550 148851050 HSFX1 MTM1 ENST00000524311.1 5167 148850558 148853029 + seg_573 148848550 148851050 HSFX1 MTM1 ENST00000428022.1 5168 148848815 148854483 + seg_574 148853750 148858950 HSFX1 MTM1 ENST00000370416.4 5169 148855726 148858525 + seg_574 148853750 148858950 HSFX1 MTM1 ENST00000449111.1 5170 149106846 149392815 + seg_577 149221300 149222500 CXorf40B MTM1 ENST00000449111.1 5171 149106846 149392815 + seg_578 149326200 149327250 CXorf40B MTM1 ENST00000468306.1 5172 149529689 149638367 + seg_579 149527800 149533900 MAMLD1 MTM1 ENST00000432680.2 5173 149531686 149681395 + seg_579 149527800 149533900 MAMLD1 MTM1 ENST00000445612.2 5174 149529836 149680503 + seg_579 149527800 149533900 MAMLD1 MTM1 ENST00000370401.2 5175 149531551 149682448 + seg_579 149527800 149533900 MAMLD1 MTM1 ENST00000426613.2 5176 149613720 149682448 + seg_580 149646250 149648200 MAMLD1 MTM1 ENST00000455522.2 5177 149639280 149680512 + seg_580 149646250 149648200 MAMLD1 MTM1 ENST00000262858.5 5178 149613720 149682448 + seg_580 149646250 149648200 MAMLD1 MTM1 ENST00000432680.2 5179 149531686 149681395 + seg_580 149646250 149648200 MAMLD1 MTM1 ENST00000445612.2 5180 149529836 149680503 + seg_580 149646250 149648200 MAMLD1 MTM1 ENST00000370401.2 5181 149531551 149682448 + seg_580 149646250 149648200 MAMLD1 MTM1 ENST00000426613.2 5182 149613720 149682448 + seg_581 149670700 149671900 MAMLD1 MTM1 ENST00000455522.2 5183 149639280 149680512 + seg_581 149670700 149671900 MAMLD1 MTM1 ENST00000262858.5 5184 149613720 149682448 + seg_581 149670700 149671900 MAMLD1 MTM1 ENST00000432680.2 5185 149531686 149681395 + seg_581 149670700 149671900 MAMLD1 MTM1 ENST00000445612.2 5186 149529836 149680503 + seg_581 149670700 149671900 MAMLD1 MTM1 ENST00000370401.2 5187 149531551 149682448 + seg_581 149670700 149671900 MAMLD1 MTM1 ENST00000464149.1 5188 149677595 149682439 + seg_582 149681150 149683750 MAMLD1 MTM1 ENST00000426613.2 5189 149613720 149682448 + seg_582 149681150 149683750 MAMLD1 MTM1 ENST00000262858.5 5190 149613720 149682448 + seg_582 149681150 149683750 MAMLD1 MTM1 ENST00000432680.2 5191 149531686 149681395 + seg_582 149681150 149683750 MAMLD1 MTM1 ENST00000370401.2 5192 149531551 149682448 + seg_582 149681150 149683750 MAMLD1 MTM1 ENST00000454196.1 5193 150343664 150346308 − seg_590 150342250 150347350 GPR50 MTM1 ENST00000535473.1 5194 150345056 150348932 + seg_590 150342250 150347350 GPR50 MTM1 ENST00000218316.3 5195 150345125 150349937 + seg_590 150342250 150347350 GPR50 MTM1 ENST00000458074.1 5196 150394701 150396187 − seg_591 150395650 150397300 GPR50 MTM1 ENST00000370361.1 5197 150565038 150573629 + seg_593 150565200 150566300 VMA21 MTM1 ENST00000330374.6 5198 150565676 150577836 + seg_593 150565200 150566300 VMA21 MTM1 ENST00000477649.1 5199 150564987 150573629 + seg_593 150565200 150566300 VMA21 MTM1 ENST00000535156.1 5200 152082986 152142024 + seg_607 152096400 152098350 ZNF185 ABCD1 ENST00000539731.1 5201 152082986 152142024 + seg_607 152096400 152098350 ZNF185 ABCD1 ENST00000447088.1 5202 152088893 152106707 + seg_607 152096400 152098350 ZNF185 ABCD1 ENST00000318504.7 5203 152082986 152142024 + seg_607 152096400 152098350 ZNF185 ABCD1 ENST00000370270.1 5204 152086665 152142025 + seg_607 152096400 152098350 ZNF185 ABCD1 ENST00000324823.6 5205 152082986 152142024 + seg_607 152096400 152098350 ZNF185 ABCD1 ENST00000426821.1 5206 152087545 152142017 + seg_607 152096400 152098350 ZNF185 ABCD1 ENST00000447792.1 5207 152089251 152106707 + seg_607 152096400 152098350 ZNF185 ABCD1 ENST00000449285.2 5208 152082986 152142024 + seg_607 152096400 152098350 ZNF185 ABCD1 ENST00000318529.8 5209 152086409 152142024 + seg_607 152096400 152098350 ZNF185 ABCD1 ENST00000535861.1 5210 152082986 152142024 + seg_607 152096400 152098350 ZNF185 ABCD1 ENST00000433245.2 5211 152082986 152128407 + seg_607 152096400 152098350 ZNF185 ABCD1 ENST00000370268.4 5212 152082997 152142015 + seg_607 152096400 152098350 ZNF185 ABCD1 ENST00000535156.1 5213 152082986 152142024 + seg_608 152101500 152102750 ZNF185 ABCD1 ENST00000539731.1 5214 152082986 152142024 + seg_608 152101500 152102750 ZNF185 ABCD1 ENST00000447088.1 5215 152088893 152106707 + seg_608 152101500 152102750 ZNF185 ABCD1 ENST00000318504.7 5216 152082986 152142024 + seg_608 152101500 152102750 ZNF185 ABCD1 ENST00000436731.1 5217 152100283 152128354 + seg_608 152101500 152102750 ZNF185 ABCD1 ENST00000370270.1 5218 152086665 152142025 + seg_608 152101500 152102750 ZNF185 ABCD1 ENST00000324823.6 5219 152082986 152142024 + seg_608 152101500 152102750 ZNF185 ABCD1 ENST00000426821.1 5220 152087545 152142017 + seg_608 152101500 152102750 ZNF185 ABCD1 ENST00000447792.1 5221 152089251 152106707 + seg_608 152101500 152102750 ZNF185 ABCD1 ENST00000449285.2 5222 152082986 152142024 + seg_608 152101500 152102750 ZNF185 ABCD1 ENST00000318529.8 5223 152086409 152142024 + seg_608 152101500 152102750 ZNF185 ABCD1 ENST00000535861.1 5224 152082986 152142024 + seg_608 152101500 152102750 ZNF185 ABCD1 ENST00000433245.2 5225 152082986 152128407 + seg_608 152101500 152102750 ZNF185 ABCD1 ENST00000370268.4 5226 152082997 152142015 + seg_608 152101500 152102750 ZNF185 ABCD1 ENST00000456193.1 5227 152387940 152393740 − seg_612 152392250 152393600 PNMA6B ABCD1 ENST00000415779.1 5228 152537078 152543256 + seg_614 152530950 152538400 MAGEA1 ABCD1 ENST00000427876.1 5229 152663209 152664240 − seg_616 152662500 152664500 ZFP92 ABCD1 ENST00000445091.1 5230 152662421 152664307 − seg_616 152662500 152664500 ZFP92 ABCD1 ENST00000431891.1 5231 152760451 152772084 + seg_618 152757650 152760600 U82695.9 ABCD1 ENST00000331595.4 5232 152760397 152775012 + seg_618 152757650 152760600 U82695.9 ABCD1 ENST00000480756.1 5233 152760441 152775004 + seg_618 152757650 152760600 U82695.9 ABCD1 ENST00000421080.2 5234 152713128 152760978 − seg_618 152757650 152760600 U82695.9 ABCD1 ENST00000431270.2 5235 152760411 152773996 + seg_618 152757650 152760600 U82695.9 ABCD1 ENST00000453918.2 5236 152721747 152760940 − seg_618 152757650 152760600 U82695.9 ABCD1 ENST00000472615.1 5237 152760439 152775004 + seg_618 152757650 152760600 U82695.9 ABCD1 ENST00000370210.1 5238 152727018 152760974 − seg_618 152757650 152760600 U82695.9 ABCD1 ENST00000418899.2 5239 152770145 152774295 + seg_619 152773950 152775950 BGN ABCD1 ENST00000492658.1 5240 152771327 152774263 + seg_619 152773950 152775950 BGN ABCD1 ENST00000370204.1 5241 152767902 152775004 + seg_619 152773950 152775950 BGN ABCD1 ENST00000430380.2 5242 152767902 152774998 + seg_619 152773950 152775950 BGN ABCD1 ENST00000331595.4 5243 152760397 152775012 + seg_619 152773950 152775950 BGN ABCD1 ENST00000480756.1 5244 152760441 152775004 + seg_619 152773950 152775950 BGN ABCD1 ENST00000431270.2 5245 152760411 152773996 + seg_619 152773950 152775950 BGN ABCD1 ENST00000472615.1 5246 152760439 152775004 + seg_619 152773950 152775950 BGN ABCD1 ENST00000349466.2 5247 152783134 152846047 + seg_620 152789000 152790950 ATP2B3 ABCD1 ENST00000370186.1 5248 152783134 152848397 + seg_620 152789000 152790950 ATP2B3 ABCD1 ENST00000349466.2 5249 152783134 152846047 + seg_621 152792050 152797450 ATP2B3 ABCD1 ENST00000370186.1 5250 152783134 152848397 + seg_621 152792050 152797450 ATP2B3 ABCD1 ENST00000263519.4 5251 152801580 152848387 + seg_622 152801800 152804350 ATP2B3 ABCD1 ENST00000349466.2 5252 152783134 152846047 + seg_622 152801800 152804350 ATP2B3 ABCD1 ENST00000359149.3 5253 152801580 152846047 + seg_622 152801800 152804350 ATP2B3 ABCD1 ENST00000370181.2 5254 152801580 152848387 + seg_622 152801800 152804350 ATP2B3 ABCD1 ENST00000393842.1 5255 152798392 152835420 + seg_622 152801800 152804350 ATP2B3 ABCD1 ENST00000370186.1 5256 152783134 152848397 + seg_622 152801800 152804350 ATP2B3 ABCD1 ENST00000263519.4 5257 152801580 152848387 + seg_623 152811300 152813150 ATP2B3 ABCD1 ENST00000349466.2 5258 152783134 152846047 + seg_623 152811300 152813150 ATP2B3 ABCD1 ENST00000359149.3 5259 152801580 152846047 + seg_623 152811300 152813150 ATP2B3 ABCD1 ENST00000370181.2 5260 152801580 152848387 + seg_623 152811300 152813150 ATP2B3 ABCD1 ENST00000393842.1 5261 152798392 152835420 + seg_623 152811300 152813150 ATP2B3 ABCD1 ENST00000370186.1 5262 152783134 152848397 + seg_623 152811300 152813150 ATP2B3 ABCD1 ENST00000263519.4 5263 152801580 152848387 + seg_624 152815500 152817200 ATP2B3 ABCD1 ENST00000349466.2 5264 152783134 152846047 + seg_624 152815500 152817200 ATP2B3 ABCD1 ENST00000359149.3 5265 152801580 152846047 + seg_624 152815500 152817200 ATP2B3 ABCD1 ENST00000370181.2 5266 152801580 152848387 + seg_624 152815500 152817200 ATP2B3 ABCD1 ENST00000393842.1 5267 152798392 152835420 + seg_624 152815500 152817200 ATP2B3 ABCD1 ENST00000370186.1 5268 152783134 152848397 + seg_624 152815500 152817200 ATP2B3 ABCD1 ENST00000460549.1 5269 152822404 152826282 + seg_625 152818800 152828200 ATP2B3 ABCD1 ENST00000263519.4 5270 152801580 152848387 + seg_625 152818800 152828200 ATP2B3 ABCD1 ENST00000349466.2 5271 152783134 152846047 + seg_625 152818800 152828200 ATP2B3 ABCD1 ENST00000359149.3 5272 152801580 152846047 + seg_625 152818800 152828200 ATP2B3 ABCD1 ENST00000370181.2 5273 152801580 152848387 + seg_625 152818800 152828200 ATP2B3 ABCD1 ENST00000393842.1 5274 152798392 152835420 + seg_625 152818800 152828200 ATP2B3 ABCD1 ENST00000370186.1 5275 152783134 152848397 + seg_625 152818800 152828200 ATP2B3 ABCD1 ENST00000496610.1 5276 152835106 152846027 + seg_626 152831650 152837100 FAM58A ABCD1 ENST00000263519.4 5277 152801580 152848387 + seg_626 152831650 152837100 FAM58A ABCD1 ENST00000349466.2 5278 152783134 152846047 + seg_626 152831650 152837100 FAM58A ABCD1 ENST00000359149.3 5279 152801580 152846047 + seg_626 152831650 152837100 FAM58A ABCD1 ENST00000370181.2 5280 152801580 152848387 + seg_626 152831650 152837100 FAM58A ABCD1 ENST00000393842.1 5281 152798392 152835420 + seg_626 152831650 152837100 FAM58A ABCD1 ENST00000370186.1 5282 152783134 152848397 + seg_626 152831650 152837100 FAM58A ABCD1 ENST00000496610.1 5283 152835106 152846027 + seg_627 152839000 152842300 FAM58A ABCD1 ENST00000263519.4 5284 152801580 152848387 + seg_627 152839000 152842300 FAM58A ABCD1 ENST00000349466.2 5285 152783134 152846047 + seg_627 152839000 152842300 FAM58A ABCD1 ENST00000359149.3 5286 152801580 152846047 + seg_627 152839000 152842300 FAM58A ABCD1 ENST00000370181.2 5287 152801580 152848387 + seg_627 152839000 152842300 FAM58A ABCD1 ENST00000370186.1 5288 152783134 152848397 + seg_627 152839000 152842300 FAM58A ABCD1 ENST00000406288.2 5289 152871972 152872343 + seg_628 152870900 152872850 FAM58A ABCD1 ENST00000446370.1 5290 152876149 152878380 + seg_629 152875300 152879100 FAM58A ABCD1 ENST00000477033.1 5291 152907946 152913467 + seg_634 152908450 152909650 DUSP9 ABCD1 ENST00000370167.4 5292 152907988 152916781 + seg_634 152908450 152909650 DUSP9 ABCD1 ENST00000433144.1 5293 152908932 152916777 + seg_634 152908450 152909650 DUSP9 ABCD1 ENST00000537633.1 5294 153067623 153073873 − seg_635 153070100 153072100 PDZD4 L1CAM ENST00000484792.1 5295 153070334 153073594 − seg_635 153070100 153072100 PDZD4 L1CAM ENST00000480418.1 5296 153071037 153096020 − seg_635 153070100 153072100 PDZD4 L1CAM ENST00000164640.4 5297 153067621 153095945 − seg_635 153070100 153072100 PDZD4 L1CAM ENST00000544474.1 5298 153068742 153095813 − seg_635 153070100 153072100 PDZD4 L1CAM ENST00000483693.1 5299 153071000 153095598 − seg_635 153070100 153072100 PDZD4 L1CAM ENST00000393758.2 5300 153067623 153095351 − seg_635 153070100 153072100 PDZD4 L1CAM ENST00000475140.1 5301 153070548 153095311 − seg_635 153070100 153072100 PDZD4 L1CAM ENST00000468491.1 5302 153072782 153095125 − seg_636 153075150 153076450 PDZD4 L1CAM ENST00000480418.1 5303 153071037 153096020 − seg_636 153075150 153076450 PDZD4 L1CAM ENST00000480650.1 5304 153073438 153095792 − seg_636 153075150 153076450 PDZD4 L1CAM ENST00000164640.4 5305 153067621 153095945 − seg_636 153075150 153076450 PDZD4 L1CAM ENST00000544474.1 5306 153068742 153095813 − seg_636 153075150 153076450 PDZD4 L1CAM ENST00000483693.1 5307 153071000 153095598 − seg_636 153075150 153076450 PDZD4 L1CAM ENST00000393758.2 5308 153067623 153095351 − seg_636 153075150 153076450 PDZD4 L1CAM ENST00000475140.1 5309 153070548 153095311 − seg_636 153075150 153076450 PDZD4 L1CAM ENST00000468491.1 5310 153072782 153095125 − seg_637 153078150 153079950 PDZD4 L1CAM ENST00000480418.1 5311 153071037 153096020 − seg_637 153078150 153079950 PDZD4 L1CAM ENST00000480650.1 5312 153073438 153095792 − seg_637 153078150 153079950 PDZD4 L1CAM ENST00000164640.4 5313 153067621 153095945 − seg_637 153078150 153079950 PDZD4 L1CAM ENST00000544474.1 5314 153068742 153095813 − seg_637 153078150 153079950 PDZD4 L1CAM ENST00000483693.1 5315 153071000 153095598 − seg_637 153078150 153079950 PDZD4 L1CAM ENST00000393758.2 5316 153067623 153095351 − seg_637 153078150 153079950 PDZD4 L1CAM ENST00000475140.1 5317 153070548 153095311 − seg_637 153078150 153079950 PDZD4 L1CAM ENST00000468491.1 5318 153072782 153095125 − seg_638 153089000 153091450 PDZD4 L1CAM ENST00000480418.1 5319 153071037 153096020 − seg_638 153089000 153091450 PDZD4 L1CAM ENST00000480650.1 5320 153073438 153095792 − seg_638 153089000 153091450 PDZD4 L1CAM ENST00000164640.4 5321 153067621 153095945 − seg_638 153089000 153091450 PDZD4 L1CAM ENST00000544474.1 5322 153068742 153095813 − seg_638 153089000 153091450 PDZD4 L1CAM ENST00000483693.1 5323 153071000 153095598 − seg_638 153089000 153091450 PDZD4 L1CAM ENST00000393758.2 5324 153067623 153095351 − seg_638 153089000 153091450 PDZD4 L1CAM ENST00000475140.1 5325 153070548 153095311 − seg_638 153089000 153091450 PDZD4 L1CAM ENST00000468491.1 5326 153072782 153095125 − seg_639 153093650 153097850 PDZD4 L1CAM ENST00000480418.1 5327 153071037 153096020 − seg_639 153093650 153097850 PDZD4 L1CAM ENST00000480650.1 5328 153073438 153095792 − seg_639 153093650 153097850 PDZD4 L1CAM ENST00000164640.4 5329 153067621 153095945 − seg_639 153093650 153097850 PDZD4 L1CAM ENST00000544474.1 5330 153068742 153095813 − seg_639 153093650 153097850 PDZD4 L1CAM ENST00000483693.1 5331 153071000 153095598 − seg_639 153093650 153097850 PDZD4 L1CAM ENST00000393758.2 5332 153067623 153095351 − seg_639 153093650 153097850 PDZD4 L1CAM ENST00000475140.1 5333 153070548 153095311 − seg_639 153093650 153097850 PDZD4 L1CAM ENST00000370058.3 5334 153127888 153129933 − seg_640 153123550 153131800 L1CAM L1CAM ENST00000491983.1 5335 153128247 153129424 − seg_640 153123550 153131800 L1CAM L1CAM ENST00000474853.1 5336 153130419 153131370 − seg_640 153123550 153131800 L1CAM L1CAM ENST00000370055.1 5337 153127408 153151608 − seg_640 153123550 153131800 L1CAM L1CAM ENST00000370057.3 5338 153126973 153141399 − seg_640 153123550 153131800 L1CAM L1CAM ENST00000361699.4 5339 153128003 153141302 − seg_640 153123550 153131800 L1CAM L1CAM ENST00000540065.1 5340 153126995 153151569 − seg_640 153123550 153131800 L1CAM L1CAM ENST00000361981.3 5341 153126973 153141399 − seg_640 153123550 153131800 L1CAM L1CAM ENST00000538883.1 5342 153126973 153141399 − seg_640 153123550 153131800 L1CAM L1CAM ENST00000370060.1 5343 153126969 153151600 − seg_640 153123550 153131800 L1CAM L1CAM ENST00000543994.1 5344 153126973 153141399 − seg_640 153123550 153131800 L1CAM L1CAM ENST00000455590.1 5345 153132227 153133832 − seg_641 153133350 153135150 L1CAM L1CAM ENST00000484652.1 5346 153133862 153134627 − seg_641 153133350 153135150 L1CAM L1CAM ENST00000496122.1 5347 153133006 153134078 − seg_641 153133350 153135150 L1CAM L1CAM ENST00000370055.1 5348 153127408 153151608 − seg_641 153133350 153135150 L1CAM L1CAM ENST00000370057.3 5349 153126973 153141399 − seg_641 153133350 153135150 L1CAM L1CAM ENST00000361699.4 5350 153128003 153141302 − seg_641 153133350 153135150 L1CAM L1CAM ENST00000540065.1 5351 153126995 153151569 − seg_641 153133350 153135150 L1CAM L1CAM ENST00000361981.3 5352 153126973 153141399 − seg_641 153133350 153135150 L1CAM L1CAM ENST00000538883.1 5353 153126973 153141399 − seg_641 153133350 153135150 L1CAM L1CAM ENST00000370060.1 5354 153126969 153151600 − seg_641 153133350 153135150 L1CAM L1CAM ENST00000543994.1 5355 153126973 153141399 − seg_641 153133350 153135150 L1CAM L1CAM ENST00000357566.1 5356 153146127 153154425 + seg_642 153150200 153151550 LCA10 L1CAM ENST00000484587.1 5357 153149319 153151615 − seg_642 153150200 153151550 LCA10 L1CAM ENST00000452593.1 5358 153146127 153154444 + seg_642 153150200 153151550 LCA10 L1CAM ENST00000370055.1 5359 153127408 153151608 − seg_642 153150200 153151550 LCA10 L1CAM ENST00000540065.1 5360 153126995 153151569 − seg_642 153150200 153151550 LCA10 L1CAM ENST00000460553.1 5361 153138404 153151596 − seg_642 153150200 153151550 LCA10 L1CAM ENST00000464967.1 5362 153137676 153174677 − seg_642 153150200 153151550 LCA10 L1CAM ENST00000420165.1 5363 153137722 153151627 − seg_642 153150200 153151550 LCA10 L1CAM ENST00000370060.1 5364 153126969 153151600 − seg_642 153150200 153151550 LCA10 L1CAM ENST00000464967.1 5365 153137676 153174677 − seg_643 153157550 153159050 LCA10 AVPR2 ENST00000370011.3 5366 153195658 153200468 − seg_644 153199600 153200600 NAA10 AVPR2 ENST00000545734.1 5367 153195383 153200462 − seg_644 153199600 153200600 NAA10 AVPR2 ENST00000432089.1 5368 153196232 153200519 − seg_644 153199600 153200600 NAA10 AVPR2 ENST00000466877.1 5369 153195379 153200468 − seg_644 153199600 153200600 NAA10 AVPR2 ENST00000393710.3 5370 153197407 153200468 − seg_644 153199600 153200600 NAA10 AVPR2 ENST00000464845.1 5371 153194695 153200676 − seg_644 153199600 153200600 NAA10 AVPR2 ENST00000460996.1 5372 153195529 153200238 − seg_644 153199600 153200600 NAA10 AVPR2 ENST00000477750.1 5373 153197224 153200533 − seg_644 153199600 153200600 NAA10 AVPR2 ENST00000393712.3 5374 153195374 153200411 − seg_644 153199600 153200600 NAA10 AVPR2 ENST00000370015.4 5375 153195367 153200494 − seg_644 153199600 153200600 NAA10 AVPR2 ENST00000478177.1 5376 153199113 153200468 − seg_644 153199600 153200600 NAA10 AVPR2 ENST00000370009.1 5377 153195377 153200468 − seg_644 153199600 153200600 NAA10 AVPR2 ENST00000488481.1 5378 153199483 153200459 − seg_644 153199600 153200600 NAA10 AVPR2 ENST00000494813.1 5379 153178664 153200452 − seg_644 153199600 153200600 NAA10 AVPR2 ENST00000369951.4 5380 153409698 153424507 + seg_646 153409000 153412050 OPN1LW OPN1MW ENST00000463296.1 5381 153409748 153421872 + seg_646 153409000 153412050 OPN1LW OPN1MW ENST00000369941.4 5382 153424682 153445634 − seg_647 153423450 153426400 OPN1LW OPN1MW ENST00000369951.4 5383 153409698 153424507 + seg_647 153423450 153426400 OPN1LW OPN1MW ENST00000442922.1 5384 153418415 153424498 + seg_647 153423450 153426400 OPN1LW OPN1MW ENST00000369941.4 5385 153424682 153445634 − seg_648 153438400 153439900 TEX28P2 OPN1MW ENST00000468495.1 5386 153448157 153459002 + seg_649 153447400 153449250 OPN1MW OPN1MW ENST00000369935.5 5387 153448107 153461633 + seg_649 153447400 153449250 OPN1MW OPN1MW ENST00000430054.1 5388 153455547 153461628 + seg_650 153454750 153456450 OPN1MW OPN1MW ENST00000468495.1 5389 153448157 153459002 + seg_650 153454750 153456450 OPN1MW OPN1MW ENST00000369935.5 5390 153448107 153461633 + seg_650 153454750 153456450 OPN1MW OPN1MW ENST00000430054.1 5391 153455547 153461628 + seg_651 153460750 153463050 OPN1MW OPN1MW ENST00000369935.5 5392 153448107 153461633 + seg_651 153460750 153463050 OPN1MW OPN1MW ENST00000369932.3 5393 153461812 153482755 − seg_651 153460750 153463050 OPN1MW OPN1MW ENST00000369932.3 5394 153461812 153482755 − seg_652 153477600 153479200 TEX28P1 OPN1MW ENST00000369932.3 5395 153461812 153482755 − seg_653 153481700 153485800 TEX28P1 OPN1MW ENST00000488220.1 5396 153485266 153496120 + seg_653 153481700 153485800 TEX28P1 OPN1MW ENST00000369929.4 5397 153485225 153498755 + seg_653 153481700 153485800 TEX28P1 OPN1MW ENST00000430419.1 5398 153492665 153498746 + seg_654 153498150 153500900 OPN1MW2 OPN1MW ENST00000361930.3 5399 153498932 153523462 − seg_654 153498150 153500900 OPN1MW2 OPN1MW ENST00000369926.1 5400 153498930 153523564 − seg_654 153498150 153500900 OPN1MW2 OPN1MW ENST00000369929.4 5401 153485225 153498755 + seg_654 153498150 153500900 OPN1MW2 OPN1MW ENST00000217905.7 5402 153524152 153558076 + seg_655 153551150 153553600 TKTL1 EMD ENST00000441970.3 5403 153524027 153558713 + seg_655 153551150 153553600 TKTL1 EMD ENST00000369915.3 5404 153524024 153558700 + seg_655 153551150 153553600 TKTL1 EMD ENST00000465168.1 5405 153548651 153553731 + seg_655 153551150 153553600 TKTL1 EMD ENST00000369912.2 5406 153533409 153558700 + seg_655 153551150 153553600 TKTL1 EMD ENST00000433825.1 5407 153562310 153563387 − seg_657 153563100 153564150 FLNA EMD ENST00000474786.1 5408 153618315 153628507 + seg_659 153617600 153619700 RPL10 EMD ENST00000455739.2 5409 155227361 155237484 + seg_663 155235050 155236450 IL9R F8 ENST00000494962.1 5410 155235779 155237711 + seg_663 155235050 155236450 IL9R F8 ENST00000424344.3 5411 155227246 155240482 + seg_663 155235050 155236450 IL9R F8 ENST00000244174.5 5412 155227246 155240273 + seg_663 155235050 155236450 IL9R F8 ENST00000540897.1 5413 155227371 155240482 + seg_663 155235050 155236450 IL9R F8 ENST00000369423.2 5414 155227371 155240482 + seg_663 155235050 155236450 IL9R F8 ENST00000483543.1 5415 155233883 155251689 + seg_663 155235050 155236450 IL9R F8 ENST00000399966.4 5416 155244288 155246502 − seg_664 155245550 155247000 WASH6P F8 ENST00000483543.1 5417 155233883 155251689 + seg_664 155245550 155247000 WASH6P F8 ENST00000482170.1 5418 155251664 155253054 + seg_665 155253000 155254000 WASH6P F8 ENST00000483079.1 5419 155252451 155253196 + seg_665 155253000 155254000 WASH6P F8 ENST00000484415.1 5420 155251664 155255328 + seg_665 155253000 155254000 WASH6P F8 ENST00000492963.1 5421 155251353 155255331 + seg_665 155253000 155254000 WASH6P F8 ENST00000496301.1 5422 155253032 155255331 + seg_665 155253000 155254000 WASH6P F8 ENST00000359512.2 5423 155249967 155255327 + seg_665 155253000 155254000 WASH6P F8 ENST00000461007.1 5424 155250993 155255328 + seg_665 155253000 155254000 WASH6P F8 ENST00000460206.1 5425 155251353 155255375 + seg_665 155253000 155254000 WASH6P F8 ENST00000483286.1 5426 155253489 155255219 + seg_665 155253000 155254000 WASH6P F8 ENST00000464205.1 5427 155253736 155255219 + seg_665 155253000 155254000 WASH6P F8 ENST00000285718.7 5428 155250706 155255299 + seg_665 155253000 155254000 WASH6P F8 ENST00000340131.7 5429 155251353 155255331 + seg_665 155253000 155254000 WASH6P F8

TABLE XVIII Table XVIII lists the 503 paRNAs associated with strong EZH2 sites in GM12878 cells. Coordinates in reference to hg19 assembly. paRNAs associated with EZH2 STRONG sites in GM12878 cells Transcript ID SIN Start Stop Strand Ezh2 ID Ezh2 Start Ezh2 End Closest gene Disease gene ENST00000390665.3 5430 294698 347445 − seg_1 334650 336100 PPP2R3B OA1 = GPR143 ENST00000445792.2 5431 305631 347690 − seg_1 334650 336100 PPP2R3B OA1 = GPR143 ENST00000381625.4 5432 308346 334779 − seg_1 334650 336100 PPP2R3B OA1 = GPR143 ENST00000381567.3 5433 1314890 1331527 − seg_2 1330550 1331800 CRLF2 OA1 = GPR143 ENST00000400841.2 5434 1314894 1331530 − seg_2 1330550 1331800 CRLF2 OA1 = GPR143 ENST00000467626.1 5435 1314894 1331616 − seg_2 1330550 1331800 CRLF2 OA1 = GPR143 ENST00000381566.1 5436 1317790 1331527 − seg_2 1330550 1331800 CRLF2 OA1 = GPR143 ENST00000381297.4 5437 1581465 1656000 − seg_3 1610000 1611450 P2RY8 OA1 = GPR143 ENST00000381297.4 5438 1581465 1656000 − seg_4 1639800 1641400 P2RY8 OA1 = GPR143 ENST00000460672.1 5439 1585330 1613246 − seg_3 1610000 1611450 P2RY8 OA1 = GPR143 ENST00000381174.5 5440 2670091 2733968 + seg_6 2730100 2731700 GYG2 OA1 = GPR143 ENST00000419513.2 5441 2670093 2732589 + seg_6 2730100 2731700 GYG2 OA1 = GPR143 ENST00000426774.1 5442 2670093 2734539 + seg_6 2730100 2731700 GYG2 OA1 = GPR143 ENST00000533923.2 5443 2670231 2732581 + seg_6 2730100 2731700 GYG2 OA1 = GPR143 ENST00000381077.5 5444 6966961 7066231 − seg_8 7001450 7003250 HDHD1 OA1 = GPR143 ENST00000544385.1 5445 6966961 7066231 − seg_8 7001450 7003250 HDHD1 OA1 = GPR143 ENST00000412827.2 5446 6967559 7066194 − seg_8 7001450 7003250 HDHD1 OA1 = GPR143 ENST00000424830.2 5447 6967804 7066199 − seg_8 7001450 7003250 HDHD1 OA1 = GPR143 ENST00000540122.1 5448 6975627 7066231 − seg_8 7001450 7003250 HDHD1 OA1 = GPR143 ENST00000486446.2 5449 6975801 7066166 − seg_8 7001450 7003250 HDHD1 OA1 = GPR143 ENST00000498474.2 5450 7002792 7066193 − seg_8 7001450 7003250 HDHD1 OA1 = GPR143 ENST00000217961.4 5451 7137497 7272851 + seg_10 7247600 7248900 STS OA1 = GPR143 ENST00000380913.3 5452 9754496 9917483 + seg_14 9754800 9756400 SHROOM2 OA1 = GPR143 ENST00000380833.4 5453 10125024 10205700 + seg_15 10123700 10128400 CLCN4 OA1 = GPR143 ENST00000380829.1 5454 10126488 10201737 + seg_15 10123700 10128400 CLCN4 OA1 = GPR143 ENST00000421085.2 5455 10126540 10201760 + seg_15 10123700 10128400 CLCN4 OA1 = GPR143 ENST00000454850.1 5456 10126572 10174759 + seg_15 10123700 10128400 CLCN4 OA1 = GPR143 ENST00000317552.4 5457 10413350 10588674 − seg_16 10587050 10589450 MID1 OA1 = GPR143 ENST00000453318.2 5458 10413350 10645779 − seg_16 10587050 10589450 MID1 OA1 = GPR143 ENST00000380782.1 5459 10413596 10588459 − seg_16 10587050 10589450 MID1 OA1 = GPR143 ENST00000380785.1 5460 10413596 10851762 − seg_16 10587050 10589450 MID1 OA1 = GPR143 ENST00000380787.1 5461 10413596 10851773 − seg_16 10587050 10589450 MID1 OA1 = GPR143 ENST00000413894.1 5462 10423115 10645727 − seg_16 10587050 10589450 MID1 OA1 = GPR143 ENST00000423614.1 5463 10534995 10588625 − seg_16 10587050 10589450 MID1 OA1 = GPR143 ENST00000312196.4 5464 11776278 11793870 + seg_17 11777450 11778850 MSL3 SEDL = TRAPPC2 ENST00000337339.2 5465 11776356 11786096 + seg_17 11777450 11778850 MSL3 SEDL = TRAPPC2 ENST00000468149.1 5466 11776372 11793350 + seg_17 11777450 11778850 MSL3 SEDL = TRAPPC2 ENST00000361672.2 5467 11776410 11793350 + seg_17 11777450 11778850 MSL3 SEDL = TRAPPC2 ENST00000476743.1 5468 11776701 11780338 + seg_17 11777450 11778850 MSL3 SEDL = TRAPPC2 ENST00000421368.2 5469 11776705 11781076 + seg_17 11777450 11778850 MSL3 SEDL = TRAPPC2 ENST00000398527.2 5470 11776728 11793574 + seg_17 11777450 11778850 MSL3 SEDL = TRAPPC2 ENST00000380693.3 5471 11777671 11793870 + seg_17 11777450 11778850 MSL3 SEDL = TRAPPC2 ENST00000380692.2 5472 11777747 11783765 + seg_17 11777450 11778850 MSL3 SEDL = TRAPPC2 ENST00000478462.1 5473 11777760 11779173 + seg_17 11777450 11778850 MSL3 SEDL = TRAPPC2 ENST00000482871.1 5474 11778162 11781026 + seg_17 11777450 11778850 MSL3 SEDL = TRAPPC2 ENST00000473806.1 5475 11778257 11779701 + seg_17 11777450 11778850 MSL3 SEDL = TRAPPC2 ENST00000483645.1 5476 11778305 11781043 + seg_17 11777450 11778850 MSL3 SEDL = TRAPPC2 ENST00000494268.1 5477 11778341 11782370 + seg_17 11777450 11778850 MSL3 SEDL = TRAPPC2 ENST00000487782.1 5478 11778594 11786803 + seg_17 11777450 11778850 MSL3 SEDL = TRAPPC2 ENST00000380682.1 5479 12156585 12742642 + seg_19 12328750 12329950 FRMPD4 SEDL = TRAPPC2 ENST00000380682.1 5480 12156585 12742642 + seg_20 12511300 12512400 PRPS2 SEDL = TRAPPC2 ENST00000380659.3 5481 12885202 12908499 + seg_23 12907600 12908700 TLR8 SEDL = TRAPPC2 ENST00000446964.1 5482 13395307 13421138 + seg_29 13400400 13401500 ATXN3L SEDL = TRAPPC2 ENST00000467590.1 5483 13680863 13700083 + seg_30 13690350 13691400 TCEANC SEDL = TRAPPC2 ENST00000380550.3 5484 13752832 13787480 + seg_31 13769950 13771750 OFD1 OFD1 ENST00000398395.3 5485 13752851 13771024 + seg_31 13769950 13771750 OFD1 OFD1 ENST00000340096.6 5486 13752864 13787472 + seg_31 13769950 13771750 OFD1 OFD1 ENST00000380567.1 5487 13752864 13787472 + seg_31 13769950 13771750 OFD1 OFD1 ENST00000490265.1 5488 13752880 13787472 + seg_31 13769950 13771750 OFD1 OFD1 ENST00000543598.1 5489 13753017 13787430 + seg_31 13769950 13771750 OFD1 OFD1 ENST00000454189.2 5490 13789575 13956757 − seg_32 13861350 13862450 GPM6B OFD1 ENST00000454189.2 5491 13789575 13956757 − seg_33 13954750 13956950 GPM6B OFD1 ENST00000398361.3 5492 13792456 13956534 − seg_32 13861350 13862450 GPM6B OFD1 ENST00000398361.3 5493 13792456 13956534 − seg_33 13954750 13956950 GPM6B OFD1 ENST00000493085.1 5494 13797972 13907176 − seg_32 13861350 13862450 GPM6B OFD1 ENST00000468080.1 5495 13798027 13907731 − seg_32 13861350 13862450 GPM6B OFD1 ENST00000380523.4 5496 14026398 14048011 − seg_34 14044850 14046750 GEMIN8 OFD1 ENST00000398355.3 5497 14026792 14048012 − seg_34 14044850 14046750 GEMIN8 OFD1 ENST00000332885.3 5498 14027230 14047734 − seg_34 14044850 14046750 GEMIN8 OFD1 ENST00000477386.1 5499 14038196 14045263 − seg_34 14044850 14046750 GEMIN8 OFD1 ENST00000297904.3 5500 15363713 15402498 − seg_37 15366600 15367950 PIGA PIGA ENST00000421585.1 5501 15621004 15639607 + seg_38 15635900 15637200 ACE2 PIGA ENST00000380342.3 5502 15645441 15683154 − seg_39 15661250 15663050 TMEM27 PIGA ENST00000329235.2 5503 15843929 15873054 − seg_41 15870450 15871500 AP1S2 PIGA ENST00000452376.1 5504 15845015 15870636 − seg_41 15870450 15871500 AP1S2 PIGA ENST00000380291.1 5505 15848182 15872927 − seg_41 15870450 15871500 AP1S2 PIGA ENST00000545766.1 5506 15849325 15872936 − seg_41 15870450 15871500 AP1S2 PIGA ENST00000450644.1 5507 15849566 15870625 − seg_41 15870450 15871500 AP1S2 PIGA ENST00000421527.2 5508 15850187 15872936 − seg_41 15870450 15871500 AP1S2 PIGA ENST00000340245.5 5509 15858670 15872939 − seg_41 15870450 15871500 AP1S2 PIGA ENST00000443824.1 5510 16606126 16730340 − seg_45 16728700 16730200 SYAP1 CC = NHS ENST00000359276.4 5511 16606429 16730775 − seg_45 16728700 16730200 SYAP1 CC = NHS ENST00000380241.3 5512 16606429 16731059 − seg_45 16728700 16730200 SYAP1 CC = NHS ENST00000380207.1 5513 16656945 16731059 − seg_45 16728700 16730200 SYAP1 CC = NHS ENST00000380063.2 5514 16964814 17167136 + seg_47 17016300 17017600 REPS2 CC = NHS ENST00000380063.2 5515 16964814 17167136 + seg_48 17092400 17093800 REPS2 CC = NHS ENST00000357277.3 5516 16964814 17171395 + seg_47 17016300 17017600 REPS2 CC = NHS ENST00000357277.3 5517 16964814 17171395 + seg_48 17092400 17093800 REPS2 CC = NHS ENST00000303843.7 5518 16964985 17171395 + seg_47 17016300 17017600 REPS2 CC = NHS ENST00000303843.7 5519 16964985 17171395 + seg_48 17092400 17093800 REPS2 CC = NHS ENST00000481792.1 5520 16965193 17040494 + seg_47 17016300 17017600 REPS2 CC = NHS ENST00000380064.4 5521 16996667 17165745 + seg_47 17016300 17017600 REPS2 CC = NHS ENST00000380064.4 5522 16996667 17165745 + seg_48 17092400 17093800 REPS2 CC = NHS ENST00000469714.1 5523 17092636 17165752 + seg_48 17092400 17093800 REPS2 CC = NHS ENST00000380060.3 5524 17393543 17754114 + seg_49 17395100 17396300 NHS CC = NHS ENST00000380060.3 5525 17393543 17754114 + seg_50 17502900 17504050 NHS CC = NHS ENST00000251900.4 5526 18257434 18372847 − seg_53 18371700 18372700 SCML2 CDKL5 ENST00000442000.2 5527 18259388 18372806 − seg_53 18371700 18372700 SCML2 CDKL5 ENST00000543067.1 5528 21392536 21660980 + seg_57 21392500 21393700 CNKSR2 PHEX ENST00000543067.1 5529 21392536 21660980 + seg_58 21456000 21457750 CNKSR2 PHEX ENST00000425654.2 5530 21392536 21672812 + seg_57 21392500 21393700 CNKSR2 PHEX ENST00000425654.2 5531 21392536 21672812 + seg_58 21456000 21457750 CNKSR2 PHEX ENST00000279451.4 5532 21392560 21660980 + seg_57 21392500 21393700 CNKSR2 PHEX ENST00000279451.4 5533 21392560 21660980 + seg_58 21456000 21457750 CNKSR2 PHEX ENST00000379510.3 5534 21392980 21672813 + seg_57 21392500 21393700 CNKSR2 PHEX ENST00000379510.3 5535 21392980 21672813 + seg_58 21456000 21457750 CNKSR2 PHEX ENST00000480138.1 5536 21450755 21488996 + seg_58 21456000 21457750 CNKSR2 PHEX ENST00000379374.4 5537 22050559 22269427 + seg_59 22244450 22245550 ZNF645 PHEX ENST00000537599.1 5538 22051016 22266300 + seg_59 22244450 22245550 ZNF645 PHEX ENST00000535894.1 5539 22056171 22266413 + seg_59 22244450 22245550 ZNF645 PHEX ENST00000418858.3 5540 22115822 22266209 + seg_59 22244450 22245550 ZNF645 PHEX ENST00000455399.1 5541 22407432 23082236 − seg_60 22543750 22544950 ZNF645 PHEX ENST00000253039.4 5542 24072833 24096088 + seg_62 24071600 24072950 EIF2S3 SAT = SAT1 ENST00000427551.1 5543 24164342 24167771 − seg_63 24163650 24165150 ZFX SAT = SAT1 ENST00000379145.1 5544 24576204 24690794 − seg_64 24664100 24665300 PCYT1B SAT = SAT1 ENST00000356768.4 5545 24579959 24665275 − seg_64 24664100 24665300 PCYT1B SAT = SAT1 ENST00000379144.2 5546 24579959 24665353 − seg_64 24664100 24665300 PCYT1B SAT = SAT1 ENST00000496020.1 5547 24580518 24665155 − seg_64 24664100 24665300 PCYT1B SAT = SAT1 ENST00000379044.4 5548 25021811 25034065 − seg_65 25024050 25042800 ARX SAT = SAT1 ENST00000378993.1 5549 28605516 29974840 + seg_66 29296100 29297200 IL1RAPL1 DAX1 = NR0B1 ENST00000378993.1 5550 28605516 29974840 + seg_67 29464050 29465100 IL1RAPL1 DAX1 = NR0B1 ENST00000378993.1 5551 28605516 29974840 + seg_68 29572800 29574700 MAGEB2 DAX1 = NR0B1 ENST00000302196.4 5552 28807461 29973937 + seg_66 29296100 29297200 IL1RAPL1 DAX1 = NR0B1 ENST00000302196.4 5553 28807461 29973937 + seg_67 29464050 29465100 IL1RAPL1 DAX1 = NR0B1 ENST00000302196.4 5554 28807461 29973937 + seg_68 29572800 29574700 MAGEB2 DAX1 = NR0B1 ENST00000378943.3 5555 30671476 30748725 + seg_72 30731150 30732450 GK DAX1 = NR0B1 ENST00000378946.3 5556 30671476 30748725 + seg_72 30731150 30732450 GK DAX1 = NR0B1 ENST00000534212.2 5557 30671476 30748725 + seg_72 30731150 30732450 GK DAX1 = NR0B1 ENST00000378945.3 5558 30671595 30747287 + seg_72 30731150 30732450 GK DAX1 = NR0B1 ENST00000427190.1 5559 30671606 30747366 + seg_72 30731150 30732450 GK DAX1 = NR0B1 ENST00000481024.1 5560 30671606 30747366 + seg_72 30731150 30732450 GK DAX1 = NR0B1 ENST00000451432.2 5561 30671613 30747555 + seg_72 30731150 30732450 GK DAX1 = NR0B1 ENST00000497961.1 5562 30716324 30740049 + seg_72 30731150 30732450 GK DAX1 = NR0B1 ENST00000464659.1 5563 30718115 30742291 − seg_72 30731150 30732450 GK DAX1 = NR0B1 ENST00000288422.2 5564 30848454 30993201 − seg_74 30989450 30990650 FTHL17 DAX1 = NR0B1 ENST00000378932.2 5565 30848454 30993201 − seg_74 30989450 30990650 FTHL17 DAX1 = NR0B1 ENST00000378684.4 5566 31132808 32430174 − seg_75 31188900 31190050 DMD DAX1 = NR0B1 ENST00000378684.4 5567 31132808 32430174 − seg_76 31789800 31791200 DMD DAX1 = NR0B1 ENST00000378684.4 5568 31132808 32430174 − seg_77 32372400 32373550 DMD DAX1 = NR0B1 ENST00000378682.4 5569 31132808 32430326 − seg_75 31188900 31190050 DMD DAX1 = NR0B1 ENST00000378682.4 5570 31132808 32430326 − seg_76 31789800 31791200 DMD DAX1 = NR0B1 ENST00000378682.4 5571 31132808 32430326 − seg_77 32372400 32373550 DMD DAX1 = NR0B1 ENST00000534884.1 5572 31132808 33038324 − seg_75 31188900 31190050 DMD DAX1 = NR0B1 ENST00000534884.1 5573 31132808 33038324 − seg_76 31789800 31791200 DMD DAX1 = NR0B1 ENST00000534884.1 5574 31132808 33038324 − seg_77 32372400 32373550 DMD DAX1 = NR0B1 ENST00000534884.1 5575 31132808 33038324 − seg_78 32690150 32691150 DMD DAX1 = NR0B1 ENST00000378723.3 5576 31137336 31285069 − seg_75 31188900 31190050 DMD DAX1 = NR0B1 ENST00000358062.2 5577 31137338 31893490 − seg_75 31188900 31190050 DMD DAX1 = NR0B1 ENST00000358062.2 5578 31137338 31893490 − seg_76 31789800 31791200 DMD DAX1 = NR0B1 ENST00000343523.2 5579 31137345 32173586 − seg_75 31188900 31190050 DMD DAX1 = NR0B1 ENST00000343523.2 5580 31137345 32173586 − seg_76 31789800 31791200 DMD DAX1 = NR0B1 ENST00000359836.1 5581 31137345 32173586 − seg_75 31188900 31190050 DMD DAX1 = NR0B1 ENST00000359836.1 5582 31137345 32173586 − seg_76 31789800 31791200 DMD DAX1 = NR0B1 ENST00000378707.3 5583 31137345 32173586 − seg_75 31188900 31190050 DMD DAX1 = NR0B1 ENST00000378707.3 5584 31137345 32173586 − seg_76 31789800 31791200 DMD DAX1 = NR0B1 ENST00000541735.1 5585 31137345 32173586 − seg_75 31188900 31190050 DMD DAX1 = NR0B1 ENST00000541735.1 5586 31137345 32173586 − seg_76 31789800 31791200 DMD DAX1 = NR0B1 ENST00000378677.2 5587 31137345 33146477 − seg_75 31188900 31190050 DMD DAX1 = NR0B1 ENST00000378677.2 5588 31137345 33146477 − seg_76 31789800 31791200 DMD DAX1 = NR0B1 ENST00000378677.2 5589 31137345 33146477 − seg_77 32372400 32373550 DMD DAX1 = NR0B1 ENST00000378677.2 5590 31137345 33146477 − seg_78 32690150 32691150 DMD DAX1 = NR0B1 ENST00000535280.1 5591 31137345 33146544 − seg_75 31188900 31190050 DMD DAX1 = NR0B1 ENST00000535280.1 5592 31137345 33146544 − seg_76 31789800 31791200 DMD DAX1 = NR0B1 ENST00000535280.1 5593 31137345 33146544 − seg_77 32372400 32373550 DMD DAX1 = NR0B1 ENST00000535280.1 5594 31137345 33146544 − seg_78 32690150 32691150 DMD DAX1 = NR0B1 ENST00000357033.4 5595 31137345 33229636 − seg_75 31188900 31190050 DMD DAX1 = NR0B1 ENST00000357033.4 5596 31137345 33229636 − seg_76 31789800 31791200 DMD DAX1 = NR0B1 ENST00000357033.4 5597 31137345 33229636 − seg_77 32372400 32373550 DMD DAX1 = NR0B1 ENST00000357033.4 5598 31137345 33229636 − seg_78 32690150 32691150 DMD DAX1 = NR0B1 ENST00000542849.1 5599 31137345 33229673 − seg_75 31188900 31190050 DMD DAX1 = NR0B1 ENST00000542849.1 5600 31137345 33229673 − seg_76 31789800 31791200 DMD DAX1 = NR0B1 ENST00000542849.1 5601 31137345 33229673 − seg_77 32372400 32373550 DMD DAX1 = NR0B1 ENST00000542849.1 5602 31137345 33229673 − seg_78 32690150 32691150 DMD DAX1 = NR0B1 ENST00000378702.4 5603 31139301 31284974 − seg_75 31188900 31190050 DMD DAX1 = NR0B1 ENST00000465285.1 5604 31139514 31947809 − seg_75 31188900 31190050 DMD DAX1 = NR0B1 ENST00000465285.1 5605 31139514 31947809 − seg_76 31789800 31791200 DMD DAX1 = NR0B1 ENST00000474231.1 5606 31139514 32173586 − seg_75 31188900 31190050 DMD DAX1 = NR0B1 ENST00000474231.1 5607 31139514 32173586 − seg_76 31789800 31791200 DMD DAX1 = NR0B1 ENST00000361471.4 5608 31139673 31285024 − seg_75 31188900 31190050 DMD DAX1 = NR0B1 ENST00000378680.2 5609 31139790 31285066 − seg_75 31188900 31190050 DMD DAX1 = NR0B1 ENST00000378705.3 5610 31187703 31224717 − seg_75 31188900 31190050 DMD DAX1 = NR0B1 ENST00000471779.1 5611 31747803 31854900 − seg_76 31789800 31791200 DMD DAX1 = NR0B1 ENST00000488902.1 5612 31950233 33229671 − seg_77 32372400 32373550 DMD DAX1 = NR0B1 ENST00000488902.1 5613 31950233 33229671 − seg_78 32690150 32691150 DMD DAX1 = NR0B1 ENST00000420596.1 5614 32382798 33229429 − seg_78 32690150 32691150 DMD DAX1 = NR0B1 ENST00000448370.1 5615 32382798 33229429 − seg_78 32690150 32691150 DMD DAX1 = NR0B1 ENST00000288447.4 5616 32534713 33357558 − seg_78 32690150 32691150 DMD DAX1 = NR0B1 ENST00000480751.1 5617 32591709 32834670 − seg_78 32690150 32691150 DMD DAX1 = NR0B1 ENST00000447523.1 5618 32591728 32867919 − seg_78 32690150 32691150 DMD DAX1 = NR0B1 ENST00000378628.4 5619 37208528 37316548 + seg_79 37222250 37223300 PRRG1 XK ENST00000491253.1 5620 37208562 37312900 + seg_79 37222250 37223300 PRRG1 XK ENST00000466533.1 5621 37208583 37312664 + seg_79 37222250 37223300 PRRG1 XK ENST00000542554.1 5622 37208583 37316545 + seg_79 37222250 37223300 PRRG1 XK ENST00000543642.1 5623 37208583 37316545 + seg_79 37222250 37223300 PRRG1 XK ENST00000465127.1 5624 37208583 38546928 + seg_79 37222250 37223300 PRRG1 XK ENST00000465127.1 5625 37208583 38546928 + seg_80 37645650 37647450 CYBB CYBB ENST00000465127.1 5626 37208583 38546928 + seg_81 37765500 37766650 DYNLT3 CYBB ENST00000465127.1 5627 37208583 38546928 + seg_82 38135850 38136950 RPGR RPGR ENST00000465127.1 5628 37208583 38546928 + seg_83 38537450 38538750 TSPAN7 OTC ENST00000484460.1 5629 37208617 37312561 + seg_79 37222250 37223300 PRRG1 XK ENST00000449135.2 5630 37208625 37316542 + seg_79 37222250 37223300 PRRG1 XK ENST00000463135.1 5631 37208632 37301477 + seg_79 37222250 37223300 PRRG1 XK ENST00000378588.4 5632 37639264 37672714 + seg_80 37645650 37647450 CYBB CYBB ENST00000545017.1 5633 37639312 37670356 + seg_80 37645650 37647450 CYBB CYBB ENST00000536160.1 5634 37639317 37670388 + seg_80 37645650 37647450 CYBB CYBB ENST00000449263.1 5635 37765400 37808658 + seg_81 37765500 37766650 DYNLT3 CYBB ENST00000309513.3 5636 38128424 38186788 − seg_82 38135850 38136950 RPGR RPGR ENST00000338898.3 5637 38128424 38186788 − seg_82 38135850 38136950 RPGR RPGR ENST00000339363.3 5638 38128424 38186788 − seg_82 38135850 38136950 RPGR RPGR ENST00000482855.1 5639 38128602 38186675 − seg_82 38135850 38136950 RPGR RPGR ENST00000318842.6 5640 38128606 38186817 − seg_82 38135850 38136950 RPGR RPGR ENST00000474584.1 5641 38128773 38186759 − seg_82 38135850 38136950 RPGR RPGR ENST00000494707.1 5642 38132688 38150718 − seg_82 38135850 38136950 RPGR RPGR ENST00000378482.2 5643 38420623 38548167 + seg_83 38537450 38538750 TSPAN7 OTC ENST00000422612.2 5644 38420795 38547422 + seg_83 38537450 38538750 TSPAN7 OTC ENST00000471410.1 5645 38420795 38547422 + seg_83 38537450 38538750 TSPAN7 OTC ENST00000475216.1 5646 38420797 38547525 + seg_83 38537450 38538750 TSPAN7 OTC ENST00000545599.1 5647 38420797 38547525 + seg_83 38537450 38538750 TSPAN7 OTC ENST00000286824.6 5648 38420797 38547651 + seg_83 38537450 38538750 TSPAN7 OTC ENST00000419600.2 5649 38525350 38548169 + seg_83 38537450 38538750 TSPAN7 OTC ENST00000447651.1 5650 39868529 39871435 + seg_87 39871150 39873000 BCOR CSNB1 = NYX EN6T00000399959.2 5651 41192651 41209462 + seg_90 41209250 41211000 DDX3X CSNB1 = NYX ENST00000478993.1 5652 41192651 41223725 + seg_90 41209250 41211000 DDX3X CSNB1 = NYX ENST00000421587.2 5653 41374187 41782265 − seg_91 41579300 41581500 GPR82 CSNB1 = NYX ENST00000318588.9 5654 41374187 41782287 − seg_91 41579300 41581500 GPR82 CSNB1 = NYX ENST00000361962.4 5655 41374187 41782287 − seg_91 41579300 41581500 GPR82 CSNB1 = NYX ENST00000378163.1 5656 41378518 41782716 − seg_91 41579300 41581500 GPR82 CSNB1 = NYX ENST00000378158.1 5657 41378906 41782592 − seg_91 41579300 41581500 GPR82 CSNB1 = NYX ENST00000378166.4 5658 41379343 41782268 − seg_91 41579300 41581500 GPR82 CSNB1 = NYX ENST00000442742.2 5659 41379589 41782260 − seg_91 41579300 41581500 GPR82 CSNB1 = NYX ENST00000378154.1 5660 41418750 41782716 − seg_91 41579300 41581500 GPR82 CSNB1 = NYX ENST00000414772.1 5661 45707328 45710447 − seg_94 45708550 45711000 KRBOX4 UBA1 ENST00000456532.1 5662 45707509 45710920 − seg_94 45708550 45711000 KRBOX4 UBA1 ENST00000328306.4 5663 46464753 46618490 − seg_95 46497450 46498550 CHST7 UBA1 ENST00000489574.1 5664 46465730 46529121 − seg_95 46497450 46498550 CHST7 UBA1 ENST00000424392.1 5665 46771711 46887378 + seg_97 46772150 46774250 CXorf31 UBA1 ENST00000424392.1 5666 46771711 46887378 + seg_98 46819250 46820950 PHF16 UBA1 ENST00000424392.1 5667 46771711 46887378 + seg_99 46839750 46841250 PHF16 UBA1 ENST00000397189.1 5668 46771736 46920641 + seg_97 46772150 46774250 CXorf31 UBA1 ENST00000397189.1 5669 46771736 46920641 + seg_98 46819250 46820950 PHF16 UBA1 ENST00000397189.1 5670 46771736 46920641 + seg_99 46839750 46841250 PHF16 UBA1 ENST00000218343.4 5671 46771868 46920640 + seg_97 46772150 46774250 CXorf31 UBA1 ENST00000218343.4 5672 46771868 46920640 + seg_98 46819250 46820950 PHF16 UBA1 ENST00000218343.4 5673 46771868 46920640 + seg_99 46839750 46841250 PHF16 UBA1 ENST00000455411.1 5674 46772231 46884185 + seg_97 46772150 46774250 CXorf31 UBAI ENST00000455411.1 5675 46772231 46884185 + seg_98 46819250 46820950 PHF16 UBA1 ENST00000455411.1 5676 46772231 46884185 + seg_99 46839750 46841250 PHF16 UBA1 ENST00000376020.2 5677 50334647 50557044 − seg_100 50489150 50490250 SHROOM4 CLCN5 ENST00000289292.7 5678 50334647 50557302 − seg_100 50489150 50490250 SHROOM4 CLCN5 ENST00000396435.3 5679 53262058 53350522 − seg_101 53349050 53352550 IQSEC2 MRX1 = IQSEC2 ENST00000375368.5 5680 53262059 53350522 − seg_101 53349050 53352550 IQSEC2 MRX1 = IQSEC2 ENST00000432596.1 5681 53352187 53352973 + seg_101 53349050 53352550 IQSEC2 MRX1 = IQSEC2 ENST00000342160.3 5682 53559057 53711114 − seg_104 53659750 53660850 HUWE1 MRX1 = IQSEC2 ENST00000342160.3 5683 53559057 53711114 − seg_105 53677550 53678650 HUWE1 MRX1 = IQSEC2 ENST00000262854.6 5684 53559105 53713673 − seg_104 53659750 53660850 HUWE1 MRX1 = IQSEC2 ENST00000262854.6 5685 53559105 53713673 − seg_105 53677550 53678650 HUWE1 MRX1 = IQSEC2 ENST00000218328.8 5686 53611171 53713673 − seg_104 53659750 53660850 HUWE1 MRX1 = IQSEC2 ENST00000218328.8 5687 53611171 53713673 − seg_105 53677550 53678650 HUWE1 MRX1 = IQSEC2 ENST00000432528.2 5688 53659006 53713673 − seg_104 53659750 53660850 HUWE1 MRX1 = IQSEC2 ENST00000432528.2 5689 53659006 53713673 − seg_105 53677550 53678650 HUWE1 MRX1 = IQSEC2 ENST00000446750.1 5690 53674384 53711114 − seg_105 53677550 53678650 HUWE1 MRX1 = IQSEC2 ENST00000476898.1 5691 56258854 56295641 + seg_106 56267800 56269150 KLF8 ALAS2 ENST00000374928.3 5692 56258870 56314322 + seg_106 56267800 56269150 KLF8 ALAS2 ENST00000462627.1 5693 56258907 56314317 + seg_106 56267800 56269150 KLF8 ALAS2 ENST00000468660.1 5694 56259480 56311102 + seg_106 56267800 56269150 KLF8 ALAS2 ENST00000358094.5 5695 56259622 56311530 + seg_106 56267800 56269150 KLF8 ALAS2 ENST00000253401.6 5696 62854847 62974993 − seg_109 62906550 62907850 ARHGEF9 AR ENST00000374878.1 5697 62854847 63005413 − seg_109 62906550 62907850 ARHGEF9 AR ENST00000374870.4 5698 62854856 62975031 − seg_109 62906550 62907850 ARHGEF9 AR ENST00000437457.2 5699 62854856 63005426 − seg_109 62906550 62907850 ARHGEF9 AR ENST00000495564.1 5700 62857860 62974991 − seg_109 62906550 62907850 ARHGEF9 AR ENST00000374872.1 5701 62857862 62974988 − seg_109 62906550 62907850 ARHGEF9 AR ENST00000374807.5 5702 64732462 64754634 − seg_111 64754100 64755650 LAS1L AR ENST00000374811.3 5703 64732462 64754636 − seg_111 64754100 64755650 LAS1L AR ENST00000312391.8 5704 64732463 64754636 − seg_111 64754100 64755650 LAS1L AR ENST00000374804.5 5705 64732463 64754636 − seg_111 64754100 64755650 LAS1L AR ENST00000484069.1 5706 64732463 64754655 − seg_111 64754100 64755650 LAS1L AR ENST00000544310.1 5707 64741799 64754636 − seg_111 64754100 64755650 LAS1L AR ENST00000204961.4 5708 68048840 68061990 + seg_113 68049150 68050700 EFNB1 ED1 = EDA ENST00000252338.4 5709 68725084 68752351 + seg_117 68725350 68726600 FAM155B ED1 = EDA ENST00000333026.3 5710 69397333 69425395 + seg_118 69416400 69418200 DGAT2L6 ED1 = EDA ENST00000374388.3 5711 69509879 69635312 + seg_119 69555900 69556900 KIF4A ED1 = EDA ENST00000374403.3 5712 69509940 69640682 + seg_119 69555900 69556900 KIF4A ED1 = EDA ENST00000194900.4 5713 69664711 69725337 + seg_120 69663400 69665750 DLG3 GJB1 ENST00000194900.4 5714 69664711 69725337 + seg_121 69690000 69691650 DLG3 GJB1 ENST00000374360.3 5715 69664819 69725337 + seg_120 69663400 69665750 DLG3 GJB1 ENST00000374360.3 5716 69664819 69725337 + seg_121 69690000 69691650 DLG3 GJB1 ENST00000463252.1 5717 69664986 69723796 + seg_120 69663400 69665750 DLG3 GJB1 ENST00000463252.1 5718 69664986 69723796 + seg_121 69690000 69691650 DLG3 GJB1 ENST00000374355.3 5719 69672155 69725337 + seg_121 69690000 69691650 DLG3 GJB1 ENST00000542398.1 5720 69674946 69725335 + seg_121 69690000 69691650 DLG3 GJB1 ENST00000489733.1 5721 69674953 69718408 + seg_121 69690000 69691650 DLG3 GJB1 ENST00000494493.1 5722 69674957 69712087 + seg_121 69690000 69691650 DLG3 GJB1 ENST00000540800.1 5723 71130938 71363424 + seg_122 71320100 71321750 RGAG4 GJB1 ENST00000540800.1 5724 71130938 71363424 + seg_123 71351100 71353000 RGAG4 GJB1 ENST00000545866.1 5725 71346958 71351758 − seg_123 71351100 71353000 RGAG4 GJB1 ENST00000479991.1 5726 71346960 71351751 − seg_123 71351100 71353000 RGAG4 GJB1 ENST00000513469.1 5727 71352000 71354556 + seg_123 71351100 71353000 RGAG4 GJB1 ENST00000439980.2 5728 71401615 71522776 + seg_124 71495000 71496100 RPS4X GJB1 ENST00000316084.6 5729 71491892 71497150 − seg_124 71495000 71496100 RPS4X GJB1 ENST00000486733.1 5730 71492563 71496077 − seg_124 71495000 71496100 RPS4X GJB1 ENST00000373626.3 5731 71494105 71497098 − seg_124 71495000 71496100 RPS4X GJB1 ENST00000453707.2 5732 71521488 71527000 − seg_125 71523650 71529700 CITED1 GJB1 ENST00000431381.1 5733 71521490 71525764 − seg_125 71523650 71529700 CITED1 GJB1 ENST00000445983.1 5734 71521490 71525764 − seg_125 71523650 71529700 CITED1 GJB1 ENST00000373619.3 5735 71521497 71527037 − seg_125 71523650 71529700 CITED1 GJB1 ENST00000246139.5 5736 71521500 71526837 − seg_125 71523650 71529700 CITED1 GJB1 ENST00000417400.1 5737 71521733 71525747 − seg_125 71523650 71529700 CITED1 GJB1 ENST00000427412.1 5738 71521818 71525415 − seg_125 71523650 71529700 CITED1 GJB1 ENST00000450875.1 5739 71521904 71525742 − seg_125 71523650 71529700 CITED1 GJB1 ENST00000454225.1 5740 71522056 71526757 − seg_125 71523650 71529700 CITED1 GJB1 ENST00000373542.4 5741 71798664 71933888 − seg_126 71833400 71834600 HDAC8 GJB1 ENST00000373545.3 5742 71798664 71934167 − seg_126 71833400 71834600 HDAC8 GJB1 ENST00000339490.3 5743 71798665 71934029 − seg_126 71833400 71834600 HDAC8 GJB1 ENST00000541944.1 5744 71798665 71934029 − seg_126 71833400 71834600 HDAC8 GJB1 ENST00000373539.3 5745 71800477 71934106 − seg_126 71833400 71834600 HDAC8 GJB1 ENST00000276033.4 5746 73640638 73753752 + seg_127 73639250 73642650 SLC16A2 ABCB7 ENST00000544091.1 5747 78200829 78217437 + seg_130 78211700 78214250 P2RY10 PGK1 ENST00000461541.1 5748 78200918 78216368 + seg_130 78211700 78214250 P2RY10 PGK1 ENST00000475374.1 5749 78200918 78216577 + seg_130 78211700 78214250 P2RY10 PGK1 ENST00000171757.2 5750 78200918 78217451 + seg_130 78211700 78214250 P2RY10 PGK1 ENST00000358130.2 5751 80369200 80457441 − seg_135 80385100 80386100 HMGN5 PGK1 ENST00000436386.1 5752 80370691 80457412 − seg_135 80385100 80386100 HMGN5 PGK1 ENST00000451455.1 5753 80371703 80457385 − seg_135 80385100 80386100 HMGN5 PGK1 ENST00000395337.2 5754 91034260 91139006 + seg_138 91034350 91035850 PCDH11X CHM ENST00000355827.4 5755 95939662 96724837 + seg_139 96703000 96704200 RPA4 BTK ENST00000373054.4 5756 95939662 96854316 + seg_139 96703000 96704200 RPA4 BTK ENST00000373061.3 5757 95939662 96855597 + seg_139 96703000 96704200 RPA4 BTK ENST00000373049.4 5758 95939711 96724834 + seg_139 96703000 96704200 RPA4 BTK ENST00000324765.8 5759 95939711 96859996 + seg_139 96703000 96704200 RPA4 BTK ENST00000537885.1 5760 95940016 96724764 + seg_139 96703000 96704200 RPA4 BTK ENST00000439759.1 5761 96686257 96819492 − seg_139 96703000 96704200 RPA4 BTK ENST00000420881.2 5762 99546642 99663595 − seg_140 99622650 99623950 PCDH19 BTK ENST00000373034.4 5763 99546642 99665271 − seg_140 99622650 99623950 PCDH19 BTK ENST00000255531.7 5764 99546644 99665271 − seg_140 99622650 99623950 PCDH19 BTK ENST00000372989.1 5765 99929488 99986498 − seg_143 99985450 99986650 SYTL4 BTK ENST00000276141.6 5766 99929491 99986522 − seg_143 99985450 99986650 SYTL4 BTK ENST00000454200.2 5767 99929491 99986522 − seg_143 99985450 99986650 SYTL4 BTK ENST00000455616.1 5768 99929491 99986522 − seg_143 99985450 99986650 SYTL4 BTK ENST00000263033.5 5769 99930894 99987108 − seg_143 99985450 99986650 SYTL4 BTK ENST00000372981.1 5770 99939693 99987107 − seg_143 99985450 99986650 SYTL4 BTK ENST00000491326.1 5771 99986402 99987110 − seg_143 99985450 99986650 SYTL4 BTK ENST00000361298.4 5772 102631268 102633005 + seg_144 102632100 102633150 NGFRAP1 GLA ENST00000372645.3 5773 102631323 102633005 + seg_144 102632100 102633150 NGFRAP1 GLA ENST00000372635.1 5774 102631335 102632988 + seg_144 102632100 102633150 NGFRAP1 GLA ENST00000372634.1 5775 102631844 102632999 + seg_144 102632100 102633150 NGFRAP1 GLA ENST00000299872.7 5776 102632109 102632992 + seg_144 102632100 102633150 NGFRAP1 GLA ENST00000360458.1 5777 102930424 102942992 − seg_145 102942900 102943900 MORF4L2 GLA ENST00000433176.2 5778 102930428 102943086 − seg_145 102942900 102943900 MORF4L2 GLA ENST00000434230.1 5779 102931423 102942966 − seg_145 102942900 102943900 MORF4L2 GLA ENST00000418819.1 5780 102931425 102942969 − seg_145 102942900 102943900 MORF4L2 GLA ENST00000492116.1 5781 102931622 102943050 − seg_145 102942900 102943900 MORF4L2 GLA ENST00000488331.1 5782 102939902 102942955 − seg_145 102942900 102943900 MORF4L2 GLA ENST00000435306.1 5783 102942212 102946700 + seg_145 102942900 102943900 MORF4L2 GLA ENST00000418562.1 5784 105937024 106033435 + seg_147 105938200 105940150 RNF128 TBG = SERPINA7 ENST00000418562.1 5785 105937024 106033435 + seg_148 105968900 105969900 RNF128 TBG = SERPINA7 ENST00000324342.3 5786 105937068 106040223 + seg_147 105938200 105940150 RNF128 TBG = SERPINA7 ENST00000324342.3 5787 105937068 106040223 + seg_148 105968900 105969900 RNF128 TBG = SERPINA7 ENST00000255499.2 5788 105969894 106040223 + seg_148 105968900 105969900 RNF128 TBG = SERPINA7 ENST00000357242.5 5789 106045910 106119375 + seg_149 106044700 106046300 TBC1D8B TBG = SERPINA7 ENST00000357242.5 5790 106045910 106119375 + seg_150 106117050 106118200 TBC1D8B PRPS1 ENST00000310452.2 5791 106045919 106093061 + seg_149 106044700 106046300 TBC1D8B TBG = SERPINA7 ENST00000481617.2 5792 106045935 106073313 + seg_149 106044700 106046300 TBC1D8B TBG = SERPINA7 ENST00000276175.3 5793 106046043 106117347 + seg_149 106044700 106046300 TBC1D8B TBG = SERPINA7 ENST00000276175.3 5794 106046043 106117347 + seg_150 106117050 106118200 TBC1D8B PRPS1 ENST00000358740.3 5795 106057103 106236570 − seg_150 106117050 106118200 TBC1D8B PRPS1 ENST00000413086.3 5796 106083914 106119375 + seg_150 106117050 106118200 TBC1D8B PRPS1 ENST00000394972.3 5797 106096743 106118337 + seg_150 106117050 106118200 TBC1D8B PRPS1 ENST00000451923.1 5798 107068985 107084611 + seg_153 107067250 107070800 MID2 PRPS1 ENST00000262843.6 5799 107069109 107170423 + seg_153 107067250 107070800 MID2 PRPS1 ENST00000443968.2 5800 107069644 107170423 + seg_153 107067250 107070800 MID2 PRPS1 ENST00000415430.3 5801 107288200 107322414 + seg_154 107314500 107315550 PSMD10 COL4A5 ENST00000217957.5 5802 107288244 107322327 + seg_154 107314500 107315550 PSMD10 COL4A5 ENST00000485533.1 5803 107307969 107316494 + seg_154 107314500 107315550 PSMD10 COL4A5 ENST00000334504.7 5804 107398837 107681660 − seg_155 107494550 107495800 COL4A6 COL4A5 ENST00000334504.7 5805 107398837 107681660 − seg_156 107670350 107671350 COL4A6 COL4A5 ENST00000372216.4 5806 107398837 107682702 − seg_155 107494550 107495800 COL4A6 COL4A5 ENST00000372216.4 5807 107398837 107682702 − seg_156 107670350 107671350 COL4A6 COL4A5 ENST00000394872.2 5808 107398838 107681658 − seg_155 107494550 107495800 COL4A6 COL4A5 ENST00000394872.2 5809 107398838 107681658 − seg_156 107670350 107671350 COL4A6 COL4A5 ENST00000541389.1 5810 107399121 107681660 − seg_155 107494550 107495800 COL4A6 COL4A5 ENST00000541389.1 5811 107399121 107681660 − seg_156 107670350 107671350 COL4A6 COL4A5 ENST00000538570.1 5812 107399275 107681556 − seg_155 107494550 107495800 COL4A6 COL4A5 ENST00000538570.1 5813 107399275 107681556 − seg_156 107670350 107671350 COL4A6 COL4A5 ENST00000545689.1 5814 107399275 107681556 − seg_155 107494550 107495800 COL4A6 COL4A5 ENST00000545689.1 5815 107399275 107681556 − seg_156 107670350 107671350 COL4A6 COL4A5 ENST00000468338.1 5816 107457022 107682702 − seg_155 107494550 107495800 COL4A6 COL4A5 ENST00000468338.1 5817 107457022 107682702 − seg_156 107670350 107671350 COL4A6 COL4A5 ENST00000461897.1 5818 107510872 107681660 − seg_156 107670350 107671350 COL4A6 COL4A5 ENST00000477085.1 5819 107510872 107682727 − seg_156 107670350 107671350 COL4A6 COL4A5 ENST00000372072.3 5820 109245863 109421012 + seg_158 109388700 109390200 TMEM164 COL4A5 ENST00000372073.1 5821 109246323 109421016 + seg_158 109388700 109390200 TMEM164 COL4A5 ENST00000372068.2 5822 109246342 109421012 + seg_158 109388700 109390200 TMEM164 COL4A5 ENST00000501872.2 5823 109246343 109420900 + seg_158 109388700 109390200 TMEM164 COL4A5 ENST00000288381.4 5824 109246343 109421016 + seg_158 109388700 109390200 TMEM164 COL4A5 ENST00000461715.1 5825 109308329 109414739 + seg_158 109388700 109390200 TMEM164 COL4A5 ENST00000464177.1 5826 109388083 109425962 + seg_158 109388700 109390200 TMEM164 COL4A5 ENST00000372057.1 5827 109439638 109683461 − seg_159 109606250 109607300 GNG5P2 COL4A5 ENST00000372057.1 5828 109439638 109683461 − seg_160 109634900 109636050 GNG5P2 COL4A5 ENST00000520821.1 5829 109602044 109694109 + seg_159 109606250 109607300 GNG5P2 COL4A5 ENST00000520821.1 5830 109602044 109694109 + seg_160 109634900 109636050 GNG5P2 COL4A5 ENST00000520821.1 5831 109602044 109694109 + seg_161 109693150 109694700 RGAG1 COL4A5 ENST00000465301.2 5832 109662285 109699562 + seg_161 109693150 109694700 RGAG1 COL4A5 ENST00000540483.1 5833 109693793 109698741 + seg_161 109693150 109694700 RGAG1 COL4A5 ENST00000540313.1 5834 109693793 109699554 + seg_161 109693150 109694700 RGAG1 COL4A5 ENST00000372045.1 5835 109917084 110038993 − seg_162 109938700 109940350 CHRDL1 COL4A5 ENST00000218054.4 5836 109917092 110039076 − seg_162 109938700 109940350 CHRDL1 COL4A5 ENST00000434224.1 5837 109917092 110039286 − seg_162 109938700 109940350 CHRDL1 COL4A5 ENST00000394797.4 5838 109918473 110038993 − seg_162 109938700 109940350 CHRDL1 COL4A5 ENST00000372042.1 5839 109919004 110039039 − seg_162 109938700 109940350 CHRDL1 COL4A5 ENST00000482160.1 5840 109919169 110039047 − seg_162 109938700 109940350 CHRDL1 COL4A5 ENST00000444321.2 5841 109919285 110039047 − seg_162 109938700 109940350 CHRDL1 COL4A5 ENST00000487141.1 5842 110909043 110956525 + seg_164 110955050 110956250 ALG13 COL4A5 ENST00000251943.4 5843 110924346 111003873 + seg_164 110955050 110956250 ALG13 COL4A5 ENST00000394780.3 5844 110924435 111003872 + seg_164 110955050 110956250 ALG13 COL4A5 ENST00000495283.1 5845 110924460 110967105 + seg_164 110955050 110956250 ALG13 COL4A5 ENST00000262839.2 5846 111017543 111326004 − seg_165 111165850 111167200 TRPC5 COL4A5 ENST00000371968.3 5847 111873876 111923282 − seg_167 111921950 111923200 LHFPL1 COL4A5 ENST00000536453.1 5848 111873879 111923375 − seg_167 111921950 111923200 LHFPL1 COL4A5 ENST00000478229.1 5849 111874502 111923282 − seg_167 111921950 111923200 LHFPL1 COL4A5 ENST00000371822.5 5850 117480036 117583921 + seg_170 117505350 117506550 WDR44 COL4A5 ENST00000254029.3 5851 117480072 117583924 + seg_170 117505350 117506550 WDR44 COL4A5 ENST00000371825.3 5852 117480106 117583900 + seg_170 117505350 117506550 WDR44 COL4A5 ENST00000493448.1 5853 117480162 117527178 + seg_170 117505350 117506550 WDR44 COL4A5 ENST00000276204.6 5854 117629861 117820126 + seg_171 117661700 117662750 DOCK11 COL4A5 ENST00000276202.7 5855 117629872 117820110 + seg_171 117661700 117662750 DOCK11 COL4A5 ENST00000310164.2 5856 117957753 117960931 + seg_172 117957150 117960300 ZCCHC12 COL4A5 ENST00000412422.1 5857 117973519 117991849 + seg_173 117985600 117986600 ZCCHC12 COL4A5 ENST00000481285.1 5858 118108581 118151946 + seg_174 118109100 118110500 LONRF3 COL4A5 ENST00000304778.7 5859 118108581 118152318 + seg_174 118109100 118110500 LONRF3 COL4A5 ENST00000365713.2 5860 118108581 118156888 + seg_174 118109100 118110500 LONRF3 COL4A5 ENST00000371628.3 5861 118108713 118151892 + seg_174 118109100 118110500 LONRF3 COL4A5 ENST00000439603.1 5862 118109325 118151950 + seg_174 118109100 118110500 LONRF3 COL4A5 ENST00000472173.1 5863 118110295 118151946 + seg_174 118109100 118110500 LONRF3 COL4A5 ENST00000422289.2 5864 118110295 118151947 + seg_174 118109100 118110500 LONRF3 COL4A5 ENST00000309720.5 5865 119392505 119445288 − seg_179 119443250 119445250 TMEM255A OCRL ENST00000371369.4 5866 119392505 119445391 − seg_179 119443250 119445250 TMEM255A OCRL ENST00000440464.1 5867 119392506 119445391 − seg_179 119443250 119445250 TMEM255A OCRL ENST00000519908.1 5868 119402218 119445411 − seg_179 119443250 119445250 TMEM255A OCRL ENST00000480821.1 5869 119443748 119445257 − seg_179 119443250 119445250 TMEM255A OCRL ENST00000422498.1 5870 124337654 124338187 − seg_183 124337400 124339100 TENM1 OCRL ENST00000488135.1 5871 129115083 129147127 + seg_186 129114500 129116250 BCORL1 OCRL ENST00000066465.7 5872 129336682 129402873 − seg_187 129398550 129399700 ZNF280C OCRL ENST00000370978.4 5873 129336685 129402873 − seg_187 129398550 129399700 ZNF280C OCRL ENST00000447817.1 5874 129349167 129402857 − seg_187 129398550 129399700 ZNF280C OCRL ENST00000370837.1 5875 131760038 132091358 − seg_189 131866700 131867750 HS6ST2 NYS1 = FRMD7 ENST00000461959.1 5876 131760044 132091354 − seg_189 131866700 131867750 HS6ST2 NYS1 = FRMD7 ENST00000370836.2 5877 131760044 132095423 − seg_189 131866700 131867750 HS6ST2 NYS1 = FRMD7 ENST00000521489.1 5878 131761998 132095423 − seg_189 131866700 131867750 HS6ST2 NYS1 = FRMD7 ENST00000370833.2 5879 131762251 132091344 − seg_189 131866700 131867750 HS6ST2 NYS1 = FRMD7 ENST00000319809.6 5880 131762877 132091305 − seg_189 131866700 131867750 HS6ST2 NYS1 = FRMD7 ENST00000370828.3 5881 132434131 132549518 − seg_190 132547800 132548950 GPC4 HPRT1 = HPRT ENST00000536418.1 5882 132435064 132549205 − seg_190 132547800 132548950 GPC4 HPRT1 = HPRT ENST00000535467.1 5883 132436668 132548587 − seg_190 132547800 132548950 GPC4 HPRT1 = HPRT ENST00000298556.7 5884 133594183 133634698 + seg_192 133603350 133604800 HPRT1 HPRT1 = HPRT ENST00000370796.4 5885 133594195 133634107 + seg_192 133603350 133604800 HPRT1 HPRT1 = HPRT ENST00000462974.1 5886 133594381 133632671 + seg_192 133603350 133604800 HPRT1 HPRT1 = HPRT ENST00000434384.1 5887 133684003 133693953 + seg_194 133684650 133685700 PLAC1 HPRT1 = HPRT ENST00000339249.4 5888 134478721 134497077 + seg_195 134491550 134493250 ZNF449 HPRT1 = HPRT ENST00000394155.2 5889 135229559 135293518 + seg_197 135231600 135232650 FHL1 HPRT1 = HPRT ENST00000370690.3 5890 135229624 135293518 + seg_197 135231600 135232650 FHL1 HPRT1 = HPRT ENST00000536581.1 5891 135229692 135292637 + seg_197 135231600 135232650 FHL1 HPRT1 = HPRT ENST00000420362.1 5892 135229825 135290725 + seg_197 135231600 135232650 FHL1 HPRT1 = HPRT ENST00000458357.1 5893 135230270 135290084 + seg_197 135231600 135232650 FHL1 HPRT1 = HPRT ENST00000535737.1 5894 135230737 135293518 + seg_197 135231600 135232650 FHL1 HPRT1 = HPRT ENST00000287538.5 5895 136648301 136653744 + seg_201 136650000 136652650 ZIC3 F9 ENST00000370606.3 5896 136648677 136659850 + seg_201 136650000 136652650 ZIC3 F9 ENST00000478471.1 5897 136650964 136652154 + seg_201 136650000 136652650 ZIC3 F9 ENST00000370603.3 5898 137715011 138286269 − seg_202 138275750 138278250 FGF13 F9 ENST00000370603.3 5899 137715011 138286269 − seg_203 138285450 138287700 FGF13 F9 ENST00000541469.1 5900 137715011 138286269 − seg_202 138275750 138278250 FGF13 F9 ENST00000541469.1 5901 137715011 138286269 − seg_203 138285450 138287700 FGF13 F9 ENST00000436198.1 5902 137715116 138287168 − seg_202 138275750 138278250 FGF13 F9 ENST00000436198.1 5903 137715116 138287168 − seg_203 138285450 138287700 FGF13 F9 ENST00000448673.1 5904 137791014 138304939 − seg_202 138275750 138278250 FGF13 F9 ENST00000448673.1 5905 137791014 138304939 − seg_203 138285450 138287700 FGF13 F9 ENST00000421460.1 5906 137939674 138285687 − seg_202 138275750 138278250 FGF13 F9 ENST00000421460.1 5907 137939674 138285687 − seg_203 138285450 138287700 FGF13 F9 ENST00000370536.2 5908 139585152 139587225 − seg_205 139583350 139585350 SOX3 F9 ENST00000498732.1 5909 139791945 139854839 + seg_206 139847900 139849150 CDR1 F9 ENST00000456981.1 5910 147579633 147582135 − seg_207 147582000 147584900 AFF2 FMR1 ENST00000370457.5 5911 147582139 148082193 + seg_207 147582000 147584900 AFF2 FMR1 ENST00000370460.2 5912 147582139 148082193 + seg_207 147582000 147584900 AFF2 FMR1 ENST00000342251.3 5913 147582228 148075954 + seg_207 147582000 147584900 AFF2 FMR1 ENST00000370458.1 5914 147582529 147985907 + seg_207 147582000 147584900 AFF2 FMR1 ENST00000468306.1 5915 149529689 149638367 + seg_210 149529400 149535200 MAMLD1 MTM1 ENST00000445612.2 5916 149529836 149680503 + seg_210 149529400 149535200 MAMLD1 MTM1 ENST00000370401.2 5917 149531551 149682448 + seg_210 149529400 149535200 MAMLD1 MTM1 ENST00000432680.2 5918 149531686 149681395 + seg_210 149529400 149535200 MAMLD1 MTM1 ENST00000454196.1 5919 150343664 150346308 − seg_212 150345300 150346350 GPR50 MTM1 ENST00000535473.1 5920 150345056 150348932 + seg_212 150345300 150346350 GPR50 MTM1 ENST00000218316.3 5921 150345125 150349937 + seg_212 150345300 150346350 GPR50 MTMI ENST00000477033.1 5922 152907946 152913467 + seg_213 152910650 152911850 DUSP9 ABCD1 ENST00000370167.4 5923 152907988 152916781 + seg_213 152910650 152911850 DUSP9 ABCD1 ENST00000433144.1 5924 152908932 152916777 + seg_213 152910650 152911850 DUSP9 ABCD1 ENST00000164640.4 5925 153067621 153095945 − seg_214 153094250 153095900 PDZD4 L1CAM ENST00000393758.2 5926 153067623 153095351 − seg_214 153094250 153095900 PDZD4 L1CAM ENST00000544474.1 5927 153068742 153095813 − seg_214 153094250 153095900 PDZD4 L1CAM ENST00000475140.1 5928 153070548 153095311 − seg_214 153094250 153095900 PDZD4 L1CAM ENST00000483693.1 5929 153071000 153095598 − seg_214 153094250 153095900 PDZD4 L1CAM ENST00000480418.1 5930 153071037 153096020 − seg_214 153094250 153095900 PDZD4 L1CAM ENST00000468491.1 5931 153072782 153095125 − seg_214 153094250 153095900 PDZD4 L1CAM ENST00000480650.1 5932 153073438 153095792 − seg_214 153094250 153095900 PDZD4 L1CAM

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Other Embodiments

It is to be understood that while the invention has been described in conjunction with the detailed description thereof, the foregoing description is intended to illustrate and not limit the scope of the invention, which is defined by the scope of the appended claims. Other aspects, advantages, and modifications are within the scope of the following claims.

For example, other embodiments can include the following: 

1. A method of activating an inactive X-linked allele in a cell, preferably a cell of a female heterozygous subject, the method comprising administering to the cell one or more of: (a) an inhibitory oligonucleotide targeting a strong or moderate PRC2 binding site as listed in Tables A, IVA-C or XIII-XV, and/or (b) an inhibitory oligonucleotide targeting a polycomb-associated RNA (pa-RNA) associated with the X-linked allele.
 2. The method of claim 1, wherein the inactive X-linked allele is associated with an X-linked disorder, and the oligonucleotide is administered in a therapeutically effective amount.
 3. The method of claim 1, wherein the cell is in a living subject.
 4. The method of claim 1, wherein the inhibitory oligonucleotide is identical or complementary to at least 8 consecutive nucleotides of a strong or moderate binding site nucleotide sequence as set forth in Tables A, IVA-C, or XIII-XV, or complementary to at least 8 consecutive nucleotides of a paRNA as set forth in Tables VI-IX or XVI-XVIII.
 5. The method of claim 1, wherein the oligonucleotide does not comprise three or more consecutive guanosine nucleotides.
 6. (canceled)
 7. The method of claim 1, wherein the oligonucleotide is 8 to 30 nucleotides in length.
 8. The method of claim 1, wherein at least one nucleotide of the oligonucleotide is a nucleotide analogue.
 9. The method of claim 1, wherein at least one nucleotide of the oligonucleotide comprises a 2′ O-methyl.
 10. (canceled)
 11. The method of claim 1, wherein the oligonucleotide comprises at least one ribonucleotide, at least one deoxyribonucleotide, or at least one bridged nucleotide.
 12. The method of claim 11, wherein the bridged nucleotide is a LNA nucleotide, a cEt nucleotide or a ENA modified nucleotide.
 13. The method of claim 1, wherein each nucleotide of the oligonucleotide is a LNA nucleotide.
 14. The method of claim 1, wherein one or more of the nucleotides of the oligonucleotide comprise 2′-fluoro-deoxyribonucleotides, 2′-O-methyl nucleotides, ENA nucleotide analogues, or LNA nucleotides.
 15. (canceled)
 16. (canceled)
 17. (canceled)
 18. The method of claim 1, wherein the nucleotides of the oligonucleotide comprise phosphorothioate internucleotide linkages between at least two nucleotides.
 19. (canceled)
 20. An inhibitory oligonucleotide that is complementary or identical to at least 8 consecutive nucleotides of a strong or moderate binding site nucleotide sequence as set forth in Table A, IVA-C or XIII-XV, or complementary to at least 8 consecutive nucleotides of a paRNA as set forth in Tables VI-IX or XVI-XVIII.
 21. The oligonucleotide of claim 20, wherein the oligonucleotide does not comprise three or more consecutive guanosine nucleotides.
 22. (canceled)
 23. The oligonucleotide of claim 20, wherein the oligonucleotide is 8 to 30 nucleotides in length.
 24. The oligonucleotide of claim 20, wherein at least one nucleotide of the oligonucleotide is a nucleotide analogue.
 25. The oligonucleotide of claim 20, wherein at least one nucleotide of the oligonucleotide comprises a 2′ O-methyl.
 26. The oligonucleotide of claim 20, wherein each nucleotide of the oligonucleotide comprises a 2′ O-methyl.
 27. The oligonucleotide of claim 20, wherein the oligonucleotide comprises at least one ribonucleotide, at least one deoxyribonucleotide, or at least one bridged nucleotide.
 28. The oligonucleotide of claim 27, wherein the bridged nucleotide is a LNA nucleotide, a cEt nucleotide or a ENA modified nucleotide.
 29. The oligonucleotide of claim 20, wherein each nucleotide of the oligonucleotide is a LNA nucleotide.
 30. The oligonucleotide of claim 20, wherein one or more of the nucleotides of the oligonucleotide comprise 2′-fluoro-deoxyribonucleotides.
 31. The oligonucleotide of claim 20, wherein one or more of the nucleotides of the oligonucleotide comprise 2′-O-methyl nucleotides.
 32. The oligonucleotide of claim 20, wherein one or more of the nucleotides of the oligonucleotide comprise ENA nucleotide analogues.
 33. The oligonucleotide of claim 20, wherein one or more of the nucleotides of the oligonucleotide comprise LNA nucleotides.
 34. The method of claim 1, wherein the nucleotides of the oligonucleotide comprise phosphorothioate internucleotide linkages between at least two nucleotides.
 35. The oligonucleotide of claim 20, wherein the nucleotides of the oligonucleotide comprise phosphorothioate internucleotide linkages between at least two nucleotides.
 36. The method of claim 1, wherein the oligonucleotide is a gapmer or a mixmer.
 37. The oligonucleotide of claim 20, which is a gapmer or a mixmer. 